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Cya stattya mistit pravopisni leksichni gramatichni stilistichni abo inshi movni pomilki yaki treba vipraviti Vi mozhete dopomogti vdoskonaliti cyu stattyu pogodivshi yiyi iz chinnimi movnimi standartami zhovten 2023 Elektromagnitnij impuls yadernogo vibuhu ce spalah elektromagnitnogo viprominyuvannya stvorenij yadernim vibuhom Elektrichni ta magnitni polya sho shvidko zminyuyutsya mozhut poyednuvatisya z elektrichnimi ta elektronnimi sistemami stvoryuyuchi shkidlivi stribki strumu ta naprugi en Specifichni harakteristiki konkretnogo yadernogo EMI zminyuyutsya zalezhno vid ryadu faktoriv najvazhlivishim z yakih ye visota vibuhu Termin elektromagnitnij impuls zazvichaj viklyuchaye optichnij infrachervonij vidimij ultrafioletovij ta ionizuyuchij napriklad rentgenivske ta gamma viprominyuvannya diapazoni U vijskovij terminologiyi yaderna boyegolovka sho vibuhnula v desyatkah abo sotnyah kilometriv nad poverhneyu Zemli vidoma yak visotnij elektromagnitnij impulsnij pristrij en Vpliv visotnogo yadernogo vibuhu zalezhit vid takih faktoriv yak visota vibuhu vihid energiyi vihid gamma viprominyuvannya vzayemodiya z magnitnim polem Zemli ta Elektromagnitne ekranuvannya cilej Zmist 1 Istoriya 1 1 Starfish Prime 1 2 Radyanske viprobuvannya 184 2 Harakteristiki 2 1 E1 2 2 E2 2 3 E3 3 Utvorennya 3 1 Visota zbroyi 3 2 Potuzhnist zbroyi 3 3 Vidstan do cili 4 Super EMI 4 1 Kitaj 4 2 Rosiya 5 Efekti 5 1 Vakuumni lampi proti tverdotilnoyi elektroniki 5 2 Elektronika v roboti proti vimknenoyi 5 3 Na litaku 5 4 Na avtomobilyah 5 5 Na malu elektroniku 5 6 Na lyudej i tvarin 6 Scenariyi napadu pislya holodnoyi vijni 7 Zahist infrastrukturi 8 U hudozhnij literaturi ta masovij kulturi 9 Div takozh 10 Primitki 11 Dzherela 12 Literatura 13 PosilannyaIstoriya RedaguvatiToj fakt sho elektromagnitnij impuls stvoryuyetsya yadernim vibuhom buv vidomij u pershi dni viprobuvan yadernoyi zbroyi Velichina EMI ta znachennya jogo naslidkiv ne buli usvidomleni odrazu 1 Pid chas pershogo yadernogo viprobuvannya SShA 16 lipnya 1945 roku elektronne obladnannya bulo ekranovane oskilki Enriko Fermi ochikuvav elektromagnitnogo impulsu Oficijni tehnichni zapisi pro ce pershe yaderne viprobuvannya stverdzhuye Usi signalni liniyi buli povnistyu ekranovani u bagatoh vipadkah podvijno ekranovani Nezvazhayuchi na ce bagato zapisiv bulo vtracheno cherez navedennya pid chas vibuhu yake paralizuvalo zapisuyuche obladnannya 2 53 Pid chas britanskih yadernih viprobuvan en u 1952 1953 rr nespravnosti priladiv poyasnyuvali radiospalahom en yak voni nazivali EMI 3 4 Pershe vidkrito zareyestrovane sposterezhennya unikalnih aspektiv EMI visotnogo yadernogo vibuhu vidbulosya pid chas yadernogo viprobuvannya Yukka z geliyevoyu kuleyu z seriyi Hardtack I en 28 kvitnya 1958 roku U comu testi vimiryuvannya elektrichnogo polya vid zbroyi potuzhnistyu 1 7 kilotonni perevishili diapazon na yakij buli nalashtovani testovi priladi i za ocinkami priblizno v p yat raziv perevishuvali mezhi na yaki buli vstanovleni oscilografi EMI Yukki spochatku buv pozitivnim todi yak spleski na nizkij visoti buli negativnimi impulsami Krim togo polyarizaciya signalu EMI Yukki bula gorizontalnoyu todi yak EMI nizkovisotnogo yadernogo vibuhu buv vertikalno polyarizovanim Nezvazhayuchi na ci chislenni vidminnosti unikalni rezultati EMI buli vidkinuti yak mozhliva anomaliya poshirennya hvili 5 Visotni yaderni viprobuvannya 1962 roku yak obgovoryuyutsya nizhche pidtverdili unikalni rezultati visotnih viprobuvan Yukki ta pidvishili obiznanist pro EMI visotnogo yadernogo vibuhu za mezhami pochatkovoyi grupi vchenih iz oboroni Velike naukove spivtovaristvo usvidomilo vazhlivist problemi EMI pislya togo yak u 1981 roci Vilyam Dzh Broud en opublikuvav seriyu z troh statej pro yadernij EMI u Science 1 6 7 Starfish Prime Redaguvati Dokladnishe Starfish PrimeU lipni 1962 roku SShA proveli viprobuvannya Starfish Prime en pidirvavshi 1 44 megatonnu 6 0 PDzh bombu na visoti 400 km nad seredinoyu Tihogo okeanu Ce prodemonstruvalo sho naslidki yadernogo vibuhu na velikij visoti en buli nabagato bilshimi nizh peredbachalosya ranishe Starfish Prime zrobilo vidomimi ci efekti gromadskosti sprichinivshi poshkodzhennya elektriki na Gavayah na vidstani priblizno 1445 km vid miscya vibuhu vimknuvshi priblizno 300 vulichnih lihtariv uvimknuvshi chislenni ohoronni signalizaciyi ta poshkodivshi mikrohvilovu liniyu 8 Starfish Prime bulo pershim uspishnim viprobuvannyam u seriyi visotnih yadernih viprobuvan Spoluchenih Shtativ u 1962 roci vidomih yak operaciya Fishbowl en Podalshi testi zibrali bilshe danih pro yavishe EMI visotnogo yadernogo vibuhu Visotni yaderni viprobuvannya Bluegill Triple Prime en i Kingfish en u zhovtni ta listopadi 1962 roku pid chas operaciyi Fishbowl dali dostatno chitki dani yaki dozvolili fizikam tochno viznachiti fizichni mehanizmi sho stoyat za elektromagnitnimi impulsami 9 Poshkodzhennya vid elektromagnitnogo viprominyuvannya pid chas viprobuvannya Starfish Prime bulo shvidko vipravleno chastkovo cherez te sho elektromagnitne viprominyuvannya nad Gavayami bulo vidnosno slabkim u porivnyanni z tim sho moglo buti stvoreno za dopomogoyu bilsh intensivnogo impulsu a takozh chastkovo cherez vidnosnu micnist porivnyano z sogodni 10 elektrichnoyi ta elektronnoyi infrastrukturi Gavayiv u 1962 r 11 Vidnosno nevelika velichina EMI Starfish Prime na Gavayah blizko 5 6 kilovolt metr i vidnosno nevelika kilkist poshkodzhen napriklad lishe vid 1 do 3 vulichnih lihtariv pogasheno 12 zmusili deyakih vchenih u pershi dni doslidzhen poviriti sho problema EMI mozhe buti neznachnoyu Piznishi rozrahunki 11 pokazali sho yakbi boyegolovka Starfish Prime bula pidirvana nad pivnichnoyu chastinoyu kontinentalnoyi chastini Spoluchenih Shtativ velichina EMI bula b nabagato bilshoyu vid 22 do 30 kV m cherez bilshu silu magnitnogo polya Zemli nad SShA a takozh jogo vidminnoyi oriyentaciyi u visokih shirotah Ci rozrahunki v poyednanni z dedali bilshoyu zalezhnistyu vid mikroelektroniki chutlivoyi do EMI posilili usvidomlennya togo sho EMI mozhe buti znachnoyu problemoyu 13 Radyanske viprobuvannya 184 Redaguvati U 1962 roci Radyanskij Soyuz proviv u kosmosi nad Kazahstanom tri yaderni viprobuvannya iz zastosuvannyam EMI ostanni v ramkah yadernih viprobuvan radyanskogo proektu K 14 Nezvazhayuchi na te sho cya zbroya bula nabagato menshoyu 300 kilotonn nizh viprobuvannya Starfish Prime yiyi provodili nad naselenoyu velikoyu susheyu ta v misci de magnitne pole Zemli bulo silnishim Povidomlyayetsya sho zbitok sprichinenij otrimanim EMI buv nabagato bilshim nizh u Starfish Prime Impuls E3 shozhij na geomagnitnu buryu z viprobuvannya 184 viklikav stribok strumu v dovgij pidzemnij liniyi elektroperedach sho sprichinilo pozhezhu na elektrostanciyi v misti Karaganda Pislya rozpadu Radyanskogo Soyuzu riven ciyeyi shkodi buv neoficijno povidomlenij vchenim SShA 15 Kilka rokiv amerikanski ta rosijski vcheni spivpracyuvali nad fenomenom EMI visotnogo yadernogo vibuhu Bulo zabezpecheno finansuvannya shob dati mozhlivist rosijskim vchenim povidomiti pro deyaki radyanski rezultati shodo EMI v mizhnarodnih naukovih zhurnalah 16 Yak naslidok isnuye oficijna dokumentaciya shodo deyakih zbitkiv vid EMI u Kazahstani 17 18 ale yiyi vse she malo u vidkritij naukovij literaturi Dlya odnogo z viprobuvan proektu K radyanski vcheni sporudili 570 kilometrovu dilyanku telefonnoyi liniyi v zoni na yaku ochikuyetsya vpliv impulsu Kontrolovana telefonna liniya bula rozdilena na pidliniyi dovzhinoyu vid 40 do 80 km rozdilenih povtoryuvachami Kozhna pidliniya bula zahishena zapobizhnikami ta gazonapovnenimi zahistami vid perenaprugi EMI vid yadernogo viprobuvannya K 3 22 zhovtnya takozh vidomogo yak viprobuvannya 184 perepaliv vsi zapobizhniki ta znishiv vsi pristroyi zahistu vid perenaprugi v usih pidliniyah 17 Opublikovani zviti vklyuchayuchi stattyu IEEE 1998 roku 17 stverdzhuyut sho pid chas viprobuvan buli znachni problemi z keramichnimi izolyatorami na povitryanih liniyah elektroperedachi U tehnichnomu zviti 2010 roku napisanomu dlya nacionalnoyi laboratoriyi Ouk Ridzh zaznacheno sho izolyatori liniyi elektroperedach buli poshkodzheni sho prizvelo do korotkogo zamikannya na liniyi a deyaki liniyi vid yednalisya vid polyusiv i vpali na zemlyu 19 Harakteristiki RedaguvatiYaderne elektromagnitne viprominyuvannya ye skladnim bagatoimpulsnim zazvichaj opisuvanim u terminah troh komponentiv yak viznacheno Mizhnarodnoyu elektrotehnichnoyu komisiyeyu IEC 20 Tri komponenti yadernogo EMI yak viznacheno IEC nazivayutsya E1 E2 i E3 20 21 E1 Redaguvati Impuls E1 ye duzhe shvidkim komponentom EMI yadernogo vibuhu E1 ce korotkochasne ale intensivne elektromagnitne pole yake indukuye visoku naprugu v elektrichnih providnikah E1 sprichinyaye bilshu chastinu poshkodzhen viklikayuchi perevishennya naprugi elektrichnogo proboyu en E1 mozhe zrujnuvati komp yuteri ta komunikacijne obladnannya i vin zminyuyetsya nadto shvidko nanosekundi shob zvichajni pristroyi zahistu vid perenaprugi en mogli zabezpechiti efektivnij zahist vid nogo Shvidkodiyuchi pristroyi zahistu vid perenaprug napriklad ti sho vikoristovuyut diodi TVS en blokuvatimut impuls E1 nbsp Mehanizm EMI vibuhu na visoti 400 km gamma promeni potraplyayut v atmosferu mizh 20 40 km visoti vikidayuchi elektroni yaki potim vidhilyayutsya vbik magnitnim polem Zemli Ce zmushuye elektroni viprominyuvati EMI na velikij ploshi Cherez kriviznu ta nahil magnitnogo polya Zemli nad SShA maksimum EMI vidbuvayetsya na pivden vid detonaciyi a minimum na pivnich 22 E1 utvoryuyetsya koli gamma viprominyuvannya vid yadernoyi detonaciyi ionizuye atomi viluchaye z nih elektroni u verhnij atmosferi Ce yavishe vidome yak efekt Komptona a otrimanij strum nazivayetsya strumom Komptona Elektroni ruhayutsya v osnovnomu vniz iz relyativistskoyu shvidkistyu bilshe 90 vidsotkiv shvidkosti svitla Za vidsutnosti magnitnogo polya ce stvorit velikij radialnij impuls elektrichnogo strumu sho poshiryuyetsya nazovni vid miscya spalahu obmezhenogo oblastyu dzherela oblastyu nad yakoyu gamma fotoni poslablyuyutsya Magnitne pole Zemli diye na potik elektroniv pid pryamim kutom yak do polya tak i do pochatkovogo vektora chastinok sho vidhilyaye elektroni ta prizvodit do sinhrotronnogo viprominyuvannya Oskilki gamma impuls sho jde nazovni poshiryuyetsya zi shvidkistyu svitla sinhrotronne viprominyuvannya elektroniv Komptona kogerentno dodayetsya sho prizvodit do viprominyuvannya elektromagnitnogo signalu Cya vzayemodiya viklikaye velikij korotkij puls 23 Kilka fizikiv pracyuvali nad problemoyu identifikaciyi mehanizmu impulsu E1 Mehanizm buv ostatochno identifikovanij Konradom Longmajrom en z Nacionalnoyi laboratoriyi Los Alamosa v 1963 roci 9 Longmajr navodit chislovi znachennya dlya tipovogo vipadku impulsu E1 stvorenogo yadernoyu zbroyeyu drugogo pokolinnya yak ot pid chas operaciyi Fishbowl en Tipovi gamma promeni yaki viprominyuye zbroya mayut energiyu priblizno 2 MeV mega elektron volt Gamma promeni peredayut priblizno polovinu svoyeyi energiyi vikinutim vilnim elektronam dayuchi energiyu priblizno 1 MeV 23 U vakuumi ta za vidsutnosti magnitnogo polya elektroni ruhalisya b iz gustinoyu strumu v desyatki amper na kvadratnij metr 23 Cherez nizhidnij nahil magnitnogo polya Zemli na visokih shirotah oblast pikovoyi napruzhenosti polya ye U podibnoyu oblastyu na ekvatorialnij storoni detonaciyi Yak pokazano na diagrami dlya yadernih vibuhiv u Pivnichnij pivkuli cya U podibna oblast znahoditsya na pivden vid tochki detonaciyi Poblizu ekvatora de magnitne pole Zemli nablizhene do gorizontalnogo napruzhenist polya E1 bilsh simetrichna navkolo miscya spalahu Pri napruzhenosti geomagnitnogo polya harakternij dlya serednih shirot ci pochatkovi elektroni obertayutsya po spirali navkolo linij magnitnogo polya z tipovim radiusom priblizno 85 m Ci pochatkovi elektroni zupinyayutsya zitknennyami z molekulami povitrya na serednij vidstani priblizno 170 m Ce oznachaye sho bilshist elektroniv zupinyayetsya zitknennyami z molekulami povitrya do zavershennya povnoyi spirali navkolo linij polya 23 Cya vzayemodiya negativno zaryadzhenih elektroniv z magnitnim polem viprominyuye impuls elektromagnitnoyi energiyi Impuls zazvichaj dosyagaye maksimalnogo znachennya priblizno za p yat nanosekund Jogo velichina zazvichaj spadaye vdvichi protyagom 200 nanosekund Zgidno z viznachennyam IEC cej impuls E1 zakinchuyetsya cherez 1000 nanosekund pislya pochatku Cej proces vidbuvayetsya odnochasno priblizno na 1025 elektronah 23 Odnochasna diya elektroniv sprichinyaye kogerentne viprominyuvannya rezultuyuchogo impulsu vid kozhnogo elektrona stvoryuyuchi odinichnij vuzkij impuls velikoyi amplitudi Vtorinni zitknennya prizvodyat do togo sho nastupni elektroni vtrachayut energiyu do togo yak dosyagnut rivnya zemli Elektroni utvoreni cimi nastupnimi zitknennyami mayut nastilki malu energiyu sho voni ne roblyat znachnogo vnesku v impuls E1 23 Ci gamma promeni z potuzhnistyu 2 MeV zazvichaj stvoryuyut impuls E1 poblizu rivnya zemli na pomirno visokih shirotah yakij dosyagaye piku blizko 50 000 volt na metr Proces ionizaciyi v serednij stratosferi prizvodit do togo sho cya oblast staye elektrichnim providnikom sho blokuye utvorennya podalshih elektromagnitnih signaliv i prizvodit do nasichennya napruzhenosti polya priblizno do 50 000 volt na metr Sila impulsu E1 zalezhit vid kilkosti ta intensivnosti gamma viprominyuvannya a takozh vid shvidkosti gamma spalahu Sila takozh pevnoyu miroyu zalezhit vid visoti Ye povidomlennya pro super EMI yadernu zbroyu yaka zdatna perevishuvati mezhu v 50 000 volt na metr za dopomogoyu nevidomih mehanizmiv Realnist i mozhlivi detali konstrukciyi ciyeyi zbroyi zasekrecheni i otzhe ne pidtverdzheni u vidkritij naukovij literaturi 24 3 E2 Redaguvati Komponent E2 generuyetsya rozsiyanimi gamma promenyami ta nepruzhnimi gamma promenyami stvoryuvanimi nejtronami Komponent E2 ye impulsom promizhnogo chasu yakij za viznachennyam IEC trivaye priblizno vid odniyeyi mikrosekundi do odniyeyi sekundi pislya vibuhu E2 maye bagato shozhosti z bliskavkoyu hocha E2 sprichinenij bliskavkoyu mozhe buti znachno bilshim nizh yadernij E2 Cherez shozhist i shiroke vikoristannya tehnologiyi bliskavkozahistu E2 zazvichaj vvazhayetsya najprostishim dlya zahistu 21 Za danimi komisiyi EMI Spoluchenih Shtativ osnovna problema z E2 polyagaye v tomu sho vin sliduye vidrazu za E1 sho mozhe poshkoditi pristroyi yaki zazvichaj zahishali b vid E2 U pidsumkovomu zviti Komisiyi z pitan ekologichnoyi bezpeki za 2004 rik zaznacheno Zagalom ce ne bude problemoyu dlya sistem kritichnoyi infrastrukturi oskilki voni mayut isnuyuchi zahisni zahodi dlya zahistu vid vipadkovih udariv bliskavki Najznachnishij rizik ye sinergetichnim oskilki komponent E2 vinikaye cherez neveliku chastku sekundi pislya vplivu pershogo komponenta yakij maye zdatnist porushuvati abo rujnuvati bagato zahisnih i kontrolnih funkcij Takim chinom energiya pov yazana z drugim komponentom mozhe proniknuti v sistemi ta poshkoditi yih 21 6 E3 Redaguvati Dokladnishe Geomagnitno navedenij strum en Komponent E3 vidriznyayetsya vid E1 i E2 E3 ce nabagato povilnishij impuls yakij trivaye vid desyatkiv do soten sekund Ce viklikano timchasovim spotvorennyam magnitnogo polya Zemli v rezultati yadernogo vibuhu Komponent E3 shozhij na geomagnitnu buryu 25 21 Podibno do geomagnitnoyi buri E3 mozhe stvoryuvati geomagnitno navedeni strumi v dovgih elektrichnih providnikah poshkodzhuyuchi taki komponenti yak transformatori linij elektroperedach 26 Cherez podibnist mizh geomagnitnimi buryami sprichinenimi sonyachnim vplivom i E3 geomagnitni buri sprichineni sonyachnim vplivom stali nazivati sonyachnimi elektromagnitnimi buryami 27 Sonyachnij EMI ne vklyuchaye komponenti E1 abo E2 28 Utvorennya RedaguvatiFaktori yaki viznachayut efektivnist zbroyi vklyuchayut visotu nad rivnem morya potuzhnist detali konstrukciyi vidstan do cili promizhni geografichni osoblivosti ta miscevu silu magnitnogo polya Zemli Visota zbroyi Redaguvati nbsp Yak pikovij EMI na zemli zminyuyetsya zalezhno vid potuzhnosti zbroyi ta visoti vibuhu Potuzhnist tut ce mittyevij vihid gamma viprominyuvannya vimiryanij u kilotonnah Ce variyuyetsya vid 0 115 do 0 5 vid zagalnoyi potuzhnosti zbroyi zalezhno vid konstrukciyi zbroyi Viprobuvannya Starfish Prime en 1962 roku iz zagalnim vihodom 1 4 Mt pokazalo gamma viprominyuvannya 0 1 otzhe 1 4 kt shvidkih gamma promeniv Sinya kriva poperednoyi ionizaciyi zastosovuyetsya do pevnih tipiv termoyadernoyi zbroyi dlya yakoyi gamma ta rentgenivske viprominyuvannya z pervinnoyi stadiyi podilu ionizuye atmosferu ta robit yiyi elektroprovidnoyu pered osnovnim impulsom z termoyadernoyi stadiyi Poperednya ionizaciya u deyakih situaciyah mozhe bukvalno zakorotiti chastinu kincevogo EMI dozvolyayuchi strumu providnosti negajno protistoyati komptonivskomu strumu elektroniv 29 30 Zgidno z Internet prajmerom opublikovanim Federaciyeyu amerikanskih vchenih en 31 Yadernij vibuh na velikij visoti stvoryuye mittyevij potik gamma promeniv vid yadernih reakcij u pristroyi Ci fotoni u svoyu chergu viroblyayut vilni elektroni visokoyi energiyi shlyahom komptonivskogo rozsiyuvannya na visotah priblizno vid 20 do 40 km Potim ci elektroni zahoplyuyutsya magnitnim polem Zemli viklikayuchi kolivalnij elektrichnij strum Cej strum zagalom asimetrichnij i viklikaye shvidko zrostayuche viprominyuvane elektromagnitne pole yake nazivayetsya elektromagnitnim impulsom EMI Oskilki elektroni zahoplyuyutsya praktichno odnochasno duzhe velike elektromagnitne dzherelo viprominyuye kogerentno Impuls mozhe legko ohoplyuvati teritoriyi rozmirom z kontinent i ce viprominyuvannya mozhe vplivati na sistemi na zemli mori ta povitri Velikij pristrij sho vibuhnuv bi na visoti 400 500 km 250 312 mil nad Kanzasom vpline na vsyu kontinentalnu chastinu SShA Signal vid takoyi podiyi poshiryuyetsya na vizualnij gorizont yak vidno z tochki vibuhu Takim chinom shob obladnannya bulo vrazheno zbroya povinna buti vishe gorizontu 31 Vkazana vishe visota perevishuye visotu Mizhnarodnoyi kosmichnoyi stanciyi ta bagatoh suputnikiv na nizkij navkolozemnij orbiti Veliki vibuhovi pristroyi mozhut mati dramatichnij vpliv na robotu suputnikiv i zv yazok yak ce stalosya pid chas operaciyi Fishbowl Shkidlivij vpliv na orbitalni suputniki zazvichaj zumovlenij inshimi faktorami nizh EMI Pid chas yadernogo viprobuvannya Starfish Prime en najbilshe poshkodzhen bulo zavdano sonyachnim panelyam suputnikiv pid chas prohodzhennya cherez radiacijni poyasi utvoreni vibuhom 32 Z vibuhami v atmosferi situaciya skladnisha U diapazoni vplivu gamma viprominyuvannya prosti zakoni bilshe ne vikonuyutsya oskilki povitrya ionizuyetsya i isnuyut inshi efekti EMI taki yak radialne elektrichne pole vnaslidok viddilennya elektroniv Komptona vid molekul povitrya razom z inshimi skladnimi yavishami Dlya poverhnevogo vibuhu poglinannya gamma promeniv povitryam obmezhilo b radius vplivu gamma promeniv priblizno do 16 km todi yak dlya vibuhu v povitri z menshoyu shilnistyu na velikih visotah diapazon vplivu bude nabagato bilshim Potuzhnist zbroyi Redaguvati Tipova potuzhnist yadernoyi zbroyi yaka vikoristovuvalasya pid chas planuvannya holodnoyi vijni dlya atak EMI bula v diapazoni vid 1 do 10 megaton vid 4 2 do 41 8 PDzh 33 39 Ce priblizno v 50 500 raziv bilshe nizh bombi Hirosimi ta Nagasaki Na sluhannyah u Kongresi Spoluchenih Shtativ fiziki zasvidchili sho zbroya potuzhnistyu 10 kiloton 42 TDzh abo menshe mozhe stvoriti velikij EMI 34 48EMI na fiksovanij vidstani vid vibuhu zbilshuyetsya shonajbilshe yak kvadratnij korin iz potuzhnosti div ilyustraciyu pravoruch Ce oznachaye sho hocha zbroya potuzhnistyu 10 kiloton 42 TDzh maye tilki 0 7 vid vidilennya energiyi zbroyi potuzhnistyu 1 44 megaton 6 0 PDzh vikoristanoyi u Starfish Prime EMI bude mati minimum 8 potuzhnosti Oskilki komponent E1 yadernogo EMI zalezhit vid shvidkogo vipusku gamma promeniv yakij stanoviv lishe 0 1 vihodu v Starfish Prime ale mozhe buti 0 5 potuzhnosti chistoyi yadernoyi zbroyi z nizkoyu potuzhnistyu bomba potuzhnistyu 10 kiloton 42 TDzh legko mozhe buti na 5 8 40 potuzhnishoyu za bombu 1 44 megaton 6 0 PDzh Starfish Prime v utvorenni EMI 35 Zagalna energiya mittyevo vidilenih gamma promeniv u vibuhu dilennya dorivnyuye 3 5 potuzhnosti ale u vibuhu 10 kiloton 42 TDzh vibuhivka navkolo serdechnika bombi poglinaye bilya 85 mittyevo vidilenih gamma promeniv tomu yih vihid stanovit lishe priblizno 0 5 vid zagalnoyi potuzhnosti U termoyadernomu Starfish Prime produktivnist podilu bula menshoyu za 100 a bilsh tovstij zovnishnij korpus poglinav blizko 95 mittyevih gamma promeniv vid iniciyuyuchogo zaryada Termoyaderna zbroya takozh mensh efektivna u stvorenni EMI oskilki persha stadiya mozhe poperedno ionizuvati povitrya 35 yake staye providnim i otzhe shvidko zamikaye strumi Komptona sho utvoryuyutsya na stadiyi termoyadernogo sintezu Otzhe nevelika zbroya chistogo dilennya z tonkimi korpusami ye nabagato efektivnishoyu u stvorenni EMI nizh bilshist megatonnih bomb Cej analiz odnak stosuyetsya lishe shvidkih komponentiv E1 ta E2 EMI yadernogo vibuhu Komponent E3 podibnij do geomagnitnoyi buri EMI yadernogo vibuhu bilsh proporcijnij zagalnomu energetichnomu vihodu zbroyi 36 Vidstan do cili Redaguvati U EMI yadernogo vibuhu vsi komponenti elektromagnitnogo impulsu generuyutsya poza zbroyeyu 31 Pid chas yadernih vibuhiv na velikij visoti en velika chastina EMI generuyetsya daleko vid miscya detonaciyi de gamma viprominyuvannya vid vibuhu potraplyaye u verhni shari atmosferi Ce elektrichne pole vid EMI nadzvichajno rivnomirne na velikij ploshi vplivu 30 Vidpovidno do standartnogo dovidkovogo tekstu pro vpliv yadernoyi zbroyi opublikovanogo Ministerstvom oboroni SShA pikove elektrichne pole i jogo amplituda na poverhni Zemli vid visotnogo vibuhu zalezhatime vid potuzhnosti vibuhu visoti vibuhu misceznahodzhennya sposterigacha ta oriyentaciyi vidnosno magnitnogo polya Zemli U zagalnomu vipadku odnak mozhna ochikuvati sho napruzhenist polya stanovitime desyatki kilovolt na metr na bilshij chastini teritoriyi na yaku vplivaye viprominyuvannya EMI 30 U teksti takozh zaznacheno sho na bilshij chastini teritoriyi na yaku vplivaye EMI napruzhenist elektrichnogo polya na zemli perevishuvatime 0 5 E max Dlya potuzhnosti menshe kilkoh soten kilotonn ce ne obov yazkovo bude virnim tomu sho napruzhenist polya v dotichnij do Zemli mozhe buti znachno menshoyu za 0 5 E max 30 E max oznachaye maksimalnu napruzhenist elektrichnogo polya v zoni urazhennya Inshimi slovami napruzhenist elektrichnogo polya u vsij oblasti na yaku vplivaye EMI bude dosit rivnomirnoyu dlya zbroyi z velikim vihidnim gamma viprominyuvannyam Dlya menshoyi zbroyi elektrichne pole mozhe zmenshuvatisya shvidshe zi zbilshennyam vidstani 30 Super EMI RedaguvatiTakozh vidomo pro rozshirenij elektromagnitnij impuls superelektromagnitnij impuls ce vidnosno novij tip vijni u yakomu yaderna zbroya stvorena dlya stvorennya znachno bilshogo elektromagnitnogo impulsu porivnyano zi standartnoyu yadernoyu zbroyeyu masovogo znishennya 37 Cya zbroya vikoristovuye impulsnij komponent E1 detonaciyi za uchastyu gamma promeniv stvoryuyuchi potuzhnist elektromagnitnogo viprominyuvannya potencijno do 200 000 volt na metr 38 Protyagom desyatilit bagato krayin eksperimentuvali zi stvorennyam takoyi zbroyi osoblivo Kitaj i Rosiya Kitaj Redaguvati Zgidno z pismovoyu zayavoyu kitajskih vijskovih krayina maye super EMI i obgovoryuye yih vikoristannya dlya napadu na Tajvan Taka ataka poslabit informacijni sistemi v krayini dozvolyayuchi Kitayu vvijti i atakuvati jogo bezposeredno vikoristovuyuchi soldativ Zgodom tajvanski vijskovi pidtverdili volodinnya Kitayem super EMI i mozhlive znishennya elektromerezh z yih vikoristannyam 39 Okrim Tajvanyu Kitaj rozglyadav mozhlivi naslidki napadu na Spolucheni Shtati iz zastosuvannyam ciyeyi zbroyi Hocha Spolucheni Shtati takozh volodiyut yadernoyu zbroyeyu krayina ne eksperimentuvala z super EMI i gipotetichno ye duzhe vrazlivoyu dlya bud yakih majbutnih atak derzhav Ce pov yazano z zalezhnistyu krayini vid komp yuteriv dlya kontrolyu znachnoyi chastini uryadu ta ekonomiki 38 Za kordonom amerikanski avianosci rozmisheni v rozumnomu radiusi diyi bombi sho vibuhnula potencijno mozhut buti povnistyu znisheni raketami na bortu a takozh budut znisheni telekomunikacijni sistemi yaki dozvolyat yim spilkuvatisya z najblizhchimi sudnami ta dispetcherami na zemli 39 Rosiya Redaguvati Pochinayuchi z holodnoyi vijni Rosiya eksperimentuvala z konstrukciyeyu ta diyeyu bomb EMI Neshodavno krayina zdijsnila kilka kiberatak na Spolucheni Shtati sho na dumku deyakih analitikiv svidchit pro mozhlivi majbutni zagalnonacionalni vidklyuchennya elektroenergiyi sprichineni super EMI zbroyeyu oskilki Rosiya yak vidomo neyu volodiye Poryad zi zvichajnimi boyegolovkami osnashenimi mozhlivostyami super EMI Rosiya rozroblyaye giperzvukovi raketi yaki v 2021 roci bude nabagato skladnishe vchasno viyaviti zahisnim sistemam SShA u viglyadi radariv i suputnikiv Cej metod robit yaderne strimuvannya en yake ye klyuchovoyu strategiyeyu Spoluchenih Shtativ u zapobiganni yadernij vijni majzhe nemozhlivim 40 Plani stvorennya pristroyu zdatnogo rozmishuvati yadernu zbroyu v kosmosi buli vpershe predstavleni Radyanskim Soyuzom u 1962 roci koli voni rozrobili sistemu vidomu yak sistema chastkovo orbitalnogo bombarduvannya en dlya dostavki yadernoyi zbroyi nad zemnoyu atmosferoyu 40 U porivnyanni z super EMI zbroyeyu yaka spryamovana na nazemni operaciyi Rosiya zaproponuvala rozrobiti suputniki z analogichnimi mozhlivostyami EMI Ce prizvede do vibuhiv na vidstani do 100 km nad poverhneyu Zemli z potencialom porushiti robotu elektronnih sistem suputnikiv SShA yaki znahodyatsya na orbiti navkolo planeti bagato z yakih ye zhittyevo vazhlivimi dlya strimuvannya ta opovishennya krayini pro mozhlivi nablizhennya raket 38 Efekti RedaguvatiEnergijne elektromagnitne viprominyuvannya mozhe timchasovo vivesti z ladu abo ostatochno poshkoditi elektronne obladnannya stvoryuyuchi visoki stribki naprugi ta strumu napivprovidnikovi komponenti piddayutsya osoblivomu riziku Naslidki poshkodzhen mozhut variyuvatisya vid nepomitnih dlya oka do pristroyiv yaki bukvalno rozlitayutsya Kabeli navit yaksho voni korotki mozhut diyati yak anteni dlya peredachi energiyi EMI do obladnannya 41 Vakuumni lampi proti tverdotilnoyi elektroniki Redaguvati Zastarile obladnannya na osnovi vakuumnih lamp ventiliv zagalom nabagato mensh urazlive do yadernogo EMI nizh tverdotilne obladnannya yake nabagato bilsh sprijnyatlive do poshkodzhennya velikimi korotkochasnimi stribkami naprugi ta strumu Radyanski vijskovi litaki chasiv holodnoyi vijni chasto mali avioniku na osnovi vakuumnih lamp tomu sho mozhlivosti tverdotilnogo obladnannya buli obmezheni i vvazhalosya sho lampove obladnannya z bilshoyu jmovirnistyu vizhive 1 Inshi komponenti v lampovij shemi mozhut buti poshkodzheni EMI Obladnannya z vakuumnimi lampami bulo poshkodzheno pid chas viprobuvan 1962 roku 18 Perenosna dvostoronnya tverdotilna UKV radiostanciya PRC 77 en vitrimala chislenni viprobuvannya elektromagnitnim viprominyuvannyam 42 Poperednya PRC 25 majzhe identichna za vinyatkom kincevogo kaskadu posilennya na vakuumnij lampi bula viprobuvana na simulyatorah EMI ale ne bula sertifikovana shodo zdatnosti zalishatisya povnistyu funkcionalnoyu Elektronika v roboti proti vimknenoyi Redaguvati Obladnannya yake pracyuye pid chas EMI bilsh vrazlive Navit impuls nizkoyi energiyi maye dostup do dzherela zhivlennya i vsi chastini sistemi osvitlyuyutsya impulsom Napriklad cherez dzherelo zhivlennya mozhe utvoritisya dugopodibnij shlyah iz silnim strumom sho prizvede do zgoryannya deyakih pristroyiv na comu shlyahu Taki naslidki vazhko peredbachiti i potribne testuvannya dlya ocinki potencijnoyi vrazlivosti 41 Na litaku Redaguvati Bagato yadernih vibuhiv bulo zdijsneno z vikoristannyam aviacijnih bomb Litak B 29 yakij dostaviv yadernu zbroyu v Hirosimu ta Nagasaki ne vtrativ potuzhnist cherez poshkodzhennya elektrikoyu tomu sho elektroni vikinuti z povitrya gamma promenyami shvidko zupinyayutsya u zvichajnomu povitri pid chas spalahiv na vidstani priblizno 10 km tomu magnitne pole Zemli ne vidhilyaye yih istotno 30 517 Yakbi litak yakij perevoziv bombi Hirosimi ta Nagasaki perebuvav u zoni intensivnogo yadernogo viprominyuvannya koli bombi vibuhnuli nad cimi mistami to voni b zaznali vplivu radialnogo EMI viklikanogo rozdilennyam zaryadiv en Ale ce vidbuvayetsya lishe v radiusi silnogo vibuhu dlya detonacij nizhche priblizno visoti 10 km Pid chas operaciyi Fishbowl en na bortu fotolitaka KC 135 yakij letiv na vidstani 300 km vid vibuhu potuzhnistyu 410 kilotonn 1700 TDzh na visotah vibuhiv 48 i 95 km 35 Vazhliva elektronika bula mensh doskonaloyu nizh sogodni i litak zmig bezpechno prizemlitisya Suchasni litaki znachnoyu miroyu zalezhat vid tverdotilnoyi elektroniki yaka duzhe chutliva do elektromagnitnih viprominyuvan Tomu vlada aviakompanij stvoryuye vimogi do viprominyuvanih poliv visokoyi intensivnosti HIRF dlya novih litakiv shob zapobigti jmovirnosti avarij sprichinenih elektromagnitnimi pereshkodami EMI 43 Dlya cogo vsi chastini litaka povinni buti elektroprovidnimi Ce osnovnij zahist vid EMI vibuhiv yaksho nemaye otvoriv dlya proniknennya hvil vseredinu litaka Krim togo izolyaciya deyakih osnovnih komp yuteriv useredini litaka takozh dodaye dodatkovij riven zahistu vid EMI vibuhiv Na avtomobilyah Redaguvati EMI jmovirno ne vpline na bilshist avtomobiliv nezvazhayuchi na te sho v suchasnih avtomobilyah intensivno vikoristovuyetsya elektronika tomu sho elektronni shemi ta kabeli avtomobiliv imovirno zanadto korotki shob piddatisya vplivu Krim togo metalevi rami avtomobiliv zabezpechuyut pevnij zahist Odnak navit nevelikij vidsotok avtomobiliv yaki vijdut z ladu cherez nespravnist elektroniki prizvede do timchasovih zatoriv 41 Na malu elektroniku Redaguvati EMI maye tim menshij efekt chim mensha dovzhina elektrichnogo providnika hocha inshi faktori takozh vplivayut na vrazlivist elektroniki tomu zhodna dovzhina ne viznachaye mezhi pislya yakoyi vizhive pevna chastina obladnannya Odnak mali elektronni pristroyi taki yak naruchni godinniki ta mobilni telefoni shvidshe za vse vitrimayut elektromagnitne viprominyuvannya 41 Ce virno lishe yaksho voni ne pidklyucheni abo ne pracyuyut Elektronika pidklyuchena do elektromerezhi mozhe piddatisya velicheznomu splesku i v kincevomu pidsumku prizvesti do postijnogo poshkodzhennya pristroyiv analogichno yakbi stavsya udar bliskavki Elektromagnitni viprominyuvannya takozh mozhut vivesti z ladu vsi vimikachi v budinku ta poshkoditi pristroyi ne pidklyucheni do filtra perenaprug Abo yaksho v budinku ye nalezhnij pristrij zahistu vid perenaprug yakij mozhe zvesti nanivec naslidki ataki EMI ta inshi zahisni pristroyi yaki zahistyat budinok Na lyudej i tvarin Redaguvati Nezvazhayuchi na te sho riznicya elektrichnih potencialiv mozhe nakopichuvatisya v elektrichnih providnikah pislya EMI vona yak pravilo ne vitikaye v tila lyudej abo tvarin i tomu kontakt ye bezpechnim 41 EMI dostatnoyi velichini ta trivalosti zdatni vplivati na organizm lyudini Mozhlivi pobichni efekti vklyuchayut klitinni mutaciyi poshkodzhennya nervovoyi sistemi vnutrishni opiki poshkodzhennya mozku ta timchasovi problemi z mislennyam i pam yattyu 44 Odnak ce bulo b u krajnih vipadkah yak ot znahodzhennya poblizu centru vibuhu ta oprominennya velikoyu kilkistyu radiaciyi ta hvil EMI Doslidzhennya pokazalo sho vpliv 200 400 EMI sprichiniv vitik sudin u mozku 45 vitik yakij buv pov yazanij iz nevelikimi problemami z mislennyam i zapam yatovuvannyam Ci efekti mozhut trivati do 12 godin pislya vplivu Cherez trivalij chas vplivu neobhidnij dlya viyavlennya bud yakogo z cih efektiv malojmovirno sho htos pobachit ci efekti navit yaksho piddavatisya vplivu vprodovzh nevelikogo periodu chasu Krim togo lyudske tilo vidchuye nevelikij vpliv oskilki signali peredayutsya himichnim shlyahom a ne elektrichnim sho uskladnyuye vpliv hvil EMI Scenariyi napadu pislya holodnoyi vijni RedaguvatiKomisiya z EMI SShA bula stvorena Kongresom Spoluchenih Shtativ u 2001 roci Komisiya oficijno vidoma yak Komisiya z ocinki zagrozi Spoluchenim Shtatam vid ataki za dopomogoyu elektromagnitnih impulsiv EMI 46 Komisiya zibrala vidomih vchenih i tehnologiv dlya skladannya kilkoh zvitiv U 2008 roci Komisiya vipustila Zvit pro kritichni nacionalni infrastrukturi 36 U comu zviti opisuyutsya jmovirni naslidki EMI yadernogo vibuhu dlya civilnoyi infrastrukturi Hocha cej zvit stosuvavsya Spoluchenih Shtativ bilshist informaciyi stosuyetsya inshih promislovo rozvinutih krayin Zvit 2008 roku buv prodovzhennyam bilsh uzagalnenogo zvitu opublikovanogo komisiyeyu v 2004 roci 21 U pismovih svidchennyah nadanih Senatu Spoluchenih Shtativ u 2005 roci spivrobitnik Komisiyi EMI povidomiv nbsp Komisiya EMI sponsoruvala vsesvitnye doslidzhennya inozemnoyi naukovoyi ta vijskovoyi literaturi shob ociniti znannya ta mozhlivo namiri inozemnih derzhav shodo atak za dopomogoyu elektromagnitnih impulsiv Opituvannya pokazalo sho fizika yavisha EMI i vijskovij potencial ataki EMI shiroko rozumiyutsya mizhnarodnoyu spilnotoyu yak ce vidobrazheno v oficijnih i neoficijnih pisannyah i zayavah Oglyad vidkritih dzherel za ostannye desyatilittya pokazuye sho vidomosti pro EMI ta ataki EMI ye prinajmni u Velikij Britaniyi Franciyi Nimechchini Izrayili Yegipti Tajvani Shveciyi Kubi Indiyi Pakistani Iraku za chasiv Saddama Husejna Irani Pn Koreya Kitaj i Rosiya Bagato inozemnih analitikiv zokrema v Irani Pivnichnij Koreyi Kitayi ta Rosiyi rozglyadayut Spolucheni Shtati yak potencijnogo agresora yakij buv bi gotovij vikoristati ves arsenal svoyeyi zbroyi vklyuchayuchi yadernu zbroyu u pershomu udari Voni sprijmayut Spolucheni Shtati yak taki sho mayut plani na vipadok neperedbachenih obstavin shob zdijsniti yadernu EMI ataku i gotovi vikonati ci plani za shirokogo diapazonu obstavin Rosijski ta kitajski vijskovi vcheni u vidkritih dzherelah opisuyut osnovni principi yadernoyi zbroyi rozroblenoyi specialno dlya stvorennya efektu posilenogo EMI yakij voni nazivayut zbroyeyu Super EMI Zbroya Super EMI zgidno z cimi inozemnimi dzherelami mozhe znishiti navit najkrashe zahisheni vijskovi ta civilni elektronni sistemi SShA 24 nbsp Komisiya z EMI Spoluchenih Shtativ viznachila davno vidomo sho zasobi zahistu majzhe povnistyu vidsutni v civilnij infrastrukturi Spoluchenih Shtativ i sho znachna chastina vijskovih sluzhb SShA bula mensh zahishena vid EMI nizh pid chas holodnoyi vijni U publichnih zayavah Komisiya rekomenduvala zrobiti elektronne obladnannya ta elektrichni komponenti stijkimi do elektromagnitnogo viprominyuvannya a takozh pidtrimuvati zapasi zapasnih chastin yaki dozvolyat zdijsnyuvati shvidkij remont 21 36 47 Komisiya z EMI Spoluchenih Shtativ ne rozglyadala inshi krayini U 2011 roci Naukova rada z pitan oboroni SShA en opublikuvala zvit pro potochni zusillya shodo zahistu kritichno vazhlivih vijskovih i civilnih sistem vid elektromagnitnogo viprominyuvannya ta inshih vpliviv yadernoyi zbroyi 48 Vijskovi sluzhbi Spoluchenih Shtativ rozrobili a v deyakih vipadkah opublikuvali gipotetichni scenariyi atak EMI 49 U 2016 roci laboratoriya Los Alamosa rozpochala fazu 0 bagatorichnogo doslidzhennya do fazi 3 shob dosliditi EMI yake povinno pidgotuvati strategiyu yakoyi slid dotrimuvatisya dlya reshti doslidzhennya 50 U 2017 roci Ministerstvo energetiki SShA opublikuvalo Plan dij shodo stijkosti do elektromagnitnih impulsiv DOE 51 Edvin Boston opublikuvav disertaciyu na cyu temu 52 a Komisiya z EMI opublikuvala Ocinka zagrozi vid elektromagnitnih impulsiv EMI 53 Komisiya z EMI bula zakrita vlitku 2017 roku 54 Voni viyavili sho v poperednih zvitah nedoocinyuvali naslidki ataki EMI na nacionalnu infrastrukturu visvitlyuvali problemi z povidomlennyami vid Ministerstva oboroni cherez sekretnij harakter materialu i rekomenduvali Ministerstvu vnutrishnoyi bezpeki zamist togo shob zvertatisya do Ministerstva oboroni za vkazivkami bezposeredno spivpracyuvati z bilsh obiznanimi chastinami Ministerstva oboroni Kilka zvitiv zaraz oprilyudnyuyutsya dlya shirokogo zagalu 55 Zahist infrastrukturi RedaguvatiProblema zahistu civilnoyi infrastrukturi vid elektromagnitnih impulsiv intensivno vivchayetsya v usomu Yevropejskomu Soyuzi i zokrema u Velikij Britaniyi 56 57 Stanom na 2017 rik kilka energetichnih kompanij u Spoluchenih Shtatah buli zalucheni do tririchnoyi programi doslidzhennya vplivu HEMP na energomerezhu Spoluchenih Shtativ pid kerivnictvom galuzevoyi nekomercijnoyi organizaciyi Institutu doslidzhen elektroenergiyi en 58 59 U 2018 roci Ministerstvo vnutrishnoyi bezpeki SShA oprilyudnilo Strategiyu zahistu ta pidgotovki do zagroz vid elektromagnitnih impulsiv EMI i geomagnitnih zburen GMD yaka stala pershoyu formulyuvannyam Ministerstvom cilisnoyi dovgostrokovoyi zasnovanoyi na partnerstvi pidhid do zahistu kritichnoyi infrastrukturi ta pidgotovki do reaguvannya ta vidnovlennya pislya potencijno katastrofichnih elektromagnitnih incidentiv 60 61 Progres na comu fronti opisano u zviti pro stan programi EMI 62 NuScale nevelika modulna kompaniya yadernih reaktoriv z Oregonu SShA zrobila svij reaktor stijkim do EMI 63 64 Avtomatizovani sistemi monitoringu ta keruvannya takozh vidomi yak sistemi dispetcherskogo kontrolyu ta zboru danih SCADA ye osnovoyu komp yuternoyi eri Voni mayut virishalne znachennya dlya masovoyi transformaciyi danih u vsomu sviti Ci sistemi kontrolyuyut palivoprovodi vodopostachannya ta merezhu 65 Ci sistemi zazvichaj znahodyatsya ne v naselenih miscyah a u viddalenih miscyah i pracyuyut avtonomno Perebuvayuchi v rezhimi distancijnogo keruvannya vin robit yih duzhe vrazlivimi do atak EMI Cherez osoblivosti cih sistem kompaniyi shoroku investuyut milyardi dolariv u rozrobku bezpechnishih sistem SCADA shob zahistiti yih vid elektromagnitnih vibuhiv i zapobigti masshtabnim poshkodzhennyam infrastrukturi Iz zahistom cih sistem EMI ataki ne stanovlyat zagrozi dlya infrastrukturi oskilki voda palivo ta elektroenergiya vse she zmozhut nadhoditi Odnak ce velichezna vartist oskilki sistemi duzhe skladni ta integrovani v kozhnu sistemu i na yih zaminu znadoblyatsya roki U hudozhnij literaturi ta masovij kulturi RedaguvatiOsoblivo z 1980 h rokiv yaderna elektromagnitna zbroya nabula znachnogo poshirennya v hudozhnij literaturi ta masovij kulturi Populyarni zasobi masovoyi informaciyi chasto nevirno opisuyut efekti EMI viklikayuchi neporozuminnya sered gromadskosti ta navit profesionaliv i v Spoluchenih Shtatah buli zrobleni oficijni zusillya shob vstanoviti rekord 41 Kosmichne komanduvannya Spoluchenih Shtativ doruchilo naukovomu pedagogu Billu Naj stvoriti video pid nazvoyu Gollivud proti EMI shob netochna gollivudska fantastika ne zaplutuvala tih komu dovoditsya mati spravu z realnimi podiyami EMI 66 Video nedostupne dlya shirokogo zagalu Div takozh RedaguvatiZbroya spryamovanoyi energiyi Elektromagnitna sumisnist Elektromagnitne seredovishe en Elektromagnitna nadchutlivist Elektromagnetizm Radioelektronna borotba Vibuhovo hvilovij viprominyuvach en Zakon elektromagnitnoyi indukciyi Faradeya Gamma spalahi Magnitna burya Visotnij yadernij vibuh en Elektromagnitna zbroya Generator Marksa Yadernij terorizm Operaciya Fishbowl en Pulsed power en Proyekt K Starfish Prime en Lazeri nadkorotkih impulsivPrimitki Redaguvati a b v Broad William J 29 travnya 1981 Nuclear Pulse I Awakening to the Chaos Factor Science angl 212 4498 1009 1012 ISSN 0036 8075 JSTOR 1685472 LCCN 17024346 OCLC 1644869 doi 10 1126 science 212 4498 1009 Bainbridge K T May 1976 Trinity Los Alamos Scientific Laboratory s 53 LA 6300 H Arhiv originalu za 9 zhovtnya 2021 Procitovano 10 serpnya 2022 cherez Federation of American Scientists en Baum Carl E May 2007 Reminiscences of High Power Electromagnetics IEEE Transactions on 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and United States Department of Energy ISBN 978 0318203690 OCLC 1086574022 OL OL10450457M a b v Federation of American Scientists Nuclear Weapon EMP Effects Arhiv originalu za 1 sichnya 2015 Procitovano 4 chervnya 2016 Hess Wilmot N September 1964 The Effects of High Altitude Explosions National Aeronautics and Space Administration NASA TN D 2402 Arhiv originalu za 9 zhovtnya 2022 Procitovano 13 travnya 2015 Committee on National Security Military Research and Development Subcommittee 16 lipnya 1997 THREAT POSED BY ELECTROMAGNETIC PULSE EMP TO U S MILITARY SYSTEMS AND CIVIL INFRASTRUCTURE Transcript angl Washington D C United States House of Representatives 105th United States Congress en s 39 H S N C No 105 18 Arhiv originalu za 11 serpnya 2022 Procitovano 11 serpnya 2022 Committee on National Security Military Research and Development Subcommittee 7 zhovtnya 1999 ELECTROMAGNETIC PULSE THREATS TO U S MILITARY AND CIVILIAN INFRASTRUCTURE Transcript angl Washington D C United States 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Action Plan DOE January 2017 Boston Jr Edwin J 2017 Critical Infrastructure Protection EMP Impacts on the US Electric Grid PhD Utica College en Bibcode 2017MsT 47B ISBN 978 0355503470 Assessing the Threat from Electromagnetic Pulse EMP I Executive Report Electromagnetic Pulse EMP Commission July 2017 Arhiv originalu za 10 grudnya 2019 Procitovano 2 chervnya 2022 cherez Defense Technical Information Center en Pry Peter Vincent 1 lipnya 2017 Life Without Electricity Storm Induced Blackouts and Implications for EMP Attack Commission to Assess the Threat to the United States from Electromagnetic Pulse EMP Attack Arhiv originalu za 3 travnya 2022 Procitovano 10 serpnya 2022 Graham William Pry Peter 18 travnya 2018 Trump s actions have been critical to defending the US against an EMP attack The Hill ISSN 1521 1568 OCLC 31153202 Arhiv originalu za 1 serpnya 2021 Developing Threats Electro Magnetic Pulses EMP Tenth Report of Session 2010 12 en gb House of Commons Defence Committee 12 lyutogo 2012 HC 1552 Arhiv originalu za 18 bereznya 2021 Procitovano 11 serpnya 2022 Extreme Electromagnetics The Triple Threat to Infrastructure Institution of Engineering and Technology en 14 sichnya 2013 Arhiv originalu za 28 chervnya 2013 Procitovano 11 serpnya 2022 America s utilities prepare for a nuclear threat to the grid The Economist angl 9 veresnya 2017 ISSN 0013 0613 Arhiv originalu za 11 listopada 2021 Procitovano 10 serpnya 2022 Hearing to examine the threat posed by electromagnetic pulse and policy options to protect energy infrastructure and to improve capabilities for adequate system restoration PDF MP4 United States Senate Committee on Energy and Natural Resources en 4 travnya 2017 Arhiv originalu za 21 lipnya 2022 Procitovano 20 veresnya 2017 DHS Combats Potential Electromagnetic Pulse EMP Attack United States Department of Homeland Security presreliz 3 veresnya 2022 Arhiv originalu za 5 lipnya 2022 Procitovano 10 serpnya 2022 Protecting and Preparing the Homeland Against 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the Threat to the United States from Electromagnetic Pulse EMP Attack Critical National Infrastructures Electromagnetic Pulse EMP Commission ISBN 978 0615535678 LCCN 2008377597 OCLC 470787210 rekomenduyetsya displayauthors dovidka Winners Dzherela RedaguvatiGurevich Vladimir 6 grudnya 2014 Cyber and Electromagnetic Threats in Modern Relay Protection vid First CRC Press ISBN 978 1482264319 LCCN 2015000591 OCLC 913991169 OL OL28824950M cherez Google Books Gurevich Vladimir 20 bereznya 2017 Protection of Substation Critical Equipment Against Intentional Electromagnetic Threats angl vid First Wiley ISBN 978 1119271437 LCCN 2016036747 OCLC 973565748 OL OL27417713M Gurevich Vladimir 30 travnya 2019 Protecting Electrical Equipment Good Practices for Preventing High Altitude Electromagnetic Pulse Impacts angl De Gruyter en ISBN 978 3110635966 OCLC 1090000823 OL OL37286906M Literatura RedaguvatiA 21st Century Complete Guide to Electromagnetic Pulse EMP Attack Threats Report of the Commission to Assess the Threat to the United States from Electromagnetic High Altitude Nuclear Weapon EMP Attacks CD ROM ISBN 978 1592483891 Threat posed by electromagnetic pulse EMP to U S military systems and civil infrastructure Hearing before the Military Research and Development Subcommittee first session hearing held July 16 1997 ISBN 978 0160561276 Electromagnetic Pulse Radiation and Protective Techniques ISBN 978 0471014034Posilannya RedaguvatiGlobalSecurity org Elektromagnitnij impuls vid haosu do kerovanogo rishennya Zahist ob yektiv vid elektromagnitnih impulsiv EMI i shtorm Inzhenernij korpus armiyi SShA Dani EMI yadernogo viprobuvannya Starfish vimiryani Richardom Uejkfildom z LANL i oglyad dokaziv sho stosuyutsya efektiv 1300 km na Gavayah a takozh oglyad rosijskih viprobuvan EMI 1962 roku Zviti Doslidnickoyi sluzhbi Kongresu CRS shodo visotnih yadernih vibuhiv MIL STD 188 125 1 Yak pracyuyut elektronni bombi Komisiya z ocinki zagrozi Spoluchenim Shtatam vid ataki za dopomogoyu elektromagnitnih impulsiv EMI Elektromagnitni impulsi i AES Vikonavchij ukaz prezidenta SShA shodo EMI Zahist elektrichnogo obladnannya efektivna praktika zapobigannya vplivu elektromagnitnih impulsiv na velikij visoti De Gruyter 2019 nedostupne posilannya z 01 12 2021 Otrimano z https uk wikipedia org w index php title Elektromagnitnij impuls yadernogo vibuhu amp oldid 40684723