{"id":38607,"date":"2019-10-31T22:24:51","date_gmt":"2019-10-31T19:24:51","guid":{"rendered":"https:\/\/prohoster.info\/blog\/budushhee-li-fi-polyaritony-eksitony-fotony-i-nemnogo-disulfida-volframa\/"},"modified":"2019-10-31T22:24:51","modified_gmt":"2019-10-31T19:24:51","slug":"budushhee-li-fi-polyaritony-eksitony-fotony-i-nemnogo-disulfida-volframa","status":"publish","type":"post","link":"https:\/\/prohoster.info\/ro\/blog\/administrirovanie\/budushhee-li-fi-polyaritony-eksitony-fotony-i-nemnogo-disulfida-volframa","title":{"rendered":"Viitorul Li-Fi: polaritoni, excitoni, fotoni \u0219i pu\u021bin disulfid de tungsten","gt_translate_keys":[{"key":"rendered","format":"text"}]},"content":{"rendered":"<p><img decoding=\"async\" alt=\"Viitorul Li-Fi: polaritoni, excitoni, fotoni \u0219i pu\u021bin disulfid de tungsten\" src=\"\/wp-content\/uploads\/2019\/10\/fd3da14c59ebcddc14ddfb7ba4e970af.jpeg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<br \/>\nDe-a lungul anilor, cercet\u0103tori din \u00eentreaga lume s-au ocupat de dou\u0103 lucruri \u2014 de a inventa \u0219i de a perfec\u021biona. Uneori este neclar ce anume este mai greu. S\u0103 lu\u0103m, de exemplu, ledurile obi\u0219nuite, care ni se par at\u00e2t de simple \u0219i comune \u00eenc\u00e2t nu le acord\u0103m aten\u021bie. Dar dac\u0103 ad\u0103ug\u0103m pu\u021bini excitoni, un praf de polaritoni \u0219i disulfid de wolfram dup\u0103 gust, ledurile nu vor mai fi at\u00e2t de prozaice. To\u021bi ace\u0219ti termeni complicati sunt denumiri pentru componente extrem de neobi\u0219nuite, a c\u0103ror combina\u021bie a permis cercet\u0103torilor de la City College din New York s\u0103 creeze un nou sistem capabil s\u0103 transmit\u0103 informa\u021bii extrem de rapid prin lumin\u0103. Aceast\u0103 dezvoltare va ajuta la \u00eembun\u0103t\u0103\u021birea tehnologiei Li-Fi. Ce ingrediente exacte au fost folosite \u00een noua tehnologie, care este re\u021beta acestui \u201efel de m\u00e2ncare\u201d \u0219i care este eficien\u021ba noului led exciton-polariton? Despre acestea ne va vorbi raportul cercet\u0103torilor. S\u0103 \u00eencepem.<noindex><a rel=\"nofollow\" name=\"habracut\"><\/a><\/noindex><\/p>\n<h3>Baza cercet\u0103rii<\/h3>\n<p>\nDac\u0103 simplific\u0103m totul la un singur cuv\u00e2nt, atunci aceast\u0103 tehnologie este lumina \u0219i tot ce \u021bine de ea. \u00cen primul r\u00e2nd, polaritonii care apar atunci c\u00e2nd fotonii interac\u021bioneaz\u0103 cu excita\u021biile mediului (f\u0103c\u00e2nd referire la fononi, excitoni, plasmoni, magnoni etc.). \u00cen al doilea r\u00e2nd, excitonii \u2014 excita\u021bie electronic\u0103 \u00eentr-un dielectric, semiconductor sau metal, care migreaz\u0103 prin cristal \u0219i nu este legat\u0103 de transferul sarcinii electrice \u0219i masei. <\/p>\n<p>Este important de men\u021bionat c\u0103 aceste quasiparticule iubesc foarte mult frigul, adic\u0103 activitatea lor poate fi observat\u0103 doar la temperaturi extrem de sc\u0103zute, ceea ce limiteaz\u0103 semnificativ utilizarea practic\u0103. Dar asta era \u00eenainte. \u00cen aceast\u0103 lucrare, cercet\u0103torii au reu\u0219it s\u0103 dep\u0103\u0219easc\u0103 limita de temperatur\u0103 \u0219i s\u0103 le utilizeze la temperaturi de camer\u0103. <\/p>\n<p>Principala caracteristic\u0103 a polaritonilor este capacitatea de a lega fotonii \u00eentre ei. Fotonii care se ciocnesc cu atomii de rubidiu \u00ee\u0219i cap\u0103t\u0103 mas\u0103. \u00cen procesul de ciocniri repetate, fotonii se resping reciproc, dar \u00een cazuri rare formeaz\u0103 perechi \u0219i triplete, pierz\u00e2nd totodat\u0103 componenta atomic\u0103 reprezentat\u0103 de atomul de rubidiu.<\/p>\n<p>Dar, pentru a face ceva cu lumina, aceasta trebuie prins\u0103. Pentru aceasta este necesar un rezonator optic, care reprezint\u0103 o combina\u021bie de elemente reflectorizante, form\u00e2nd o und\u0103 luminoas\u0103 sta\u021bionar\u0103. <\/p>\n<p>\u00cen aceast\u0103 cercetare, un rol esen\u021bial \u00eel au particulele cu totul neobi\u0219nuite - exciton-polaritoni, care se formeaz\u0103 datorit\u0103 interac\u021biunii puternice dintre excitoni \u0219i fotoni, prinsi \u00eentr-un rezonator optic. <\/p>\n<p>Cu toate acestea, aceasta nu este suficient, deoarece este necesar\u0103 o baz\u0103 material\u0103, a\u0219a cum se spune. \u0218i cine, dac\u0103 nu dihialcogenidele metalelor de tranzi\u021bie (DPM), va juca cel mai bine acest rol? Mai exact, ca material de emisie a fost utilizat monolay WS2 (disulfid de tungsten), care are energii de leg\u0103tur\u0103 a excitonilor impresionante, ceea ce a devenit unul dintre criteriile principale pentru alegerea bazei materiale.<\/p>\n<p>Concomiten\u021ba tuturor elementelor descrise mai sus a permis crearea unui diod polaritonic electric controlat, care func\u021bioneaz\u0103 la temperaturi ambientale.<\/p>\n<p>Pentru realizarea acestui dispozitiv, monolay WS2 este plasat \u00eentre bariere sub\u021biri hexagonale din nitrur\u0103 de bor (hBN), av\u00e2nd straturi de grafen, care ac\u021bioneaz\u0103 ca electrozi.<\/p>\n<h3>Rezultatele cercet\u0103rii<\/h3>\n<p>\nWS2, fiind o dihialcogenid\u0103 a metalelor de tranzi\u021bie, este de asemenea un material Van-der-Waals (vdW) sub\u021bire din punct de vedere atomic. Aceasta indic\u0103 propriet\u0103\u021bile sale electrice, optice, mecanice \u0219i termice unice. <\/p>\n<p>\u00cen combina\u021bie cu alte materiale vdW, cum ar fi grafenul (ca conductor) \u0219i nitrura hexagonal\u0103 de bor (hBN, ca izolator), se pot realiza o serie \u00eentreag\u0103 de dispozitive semiconductoare controlate electric, dintre care fac parte \u0219i diodurile. Astfel de combina\u021bii ale materialelor Van-der-Waals \u0219i ale polaritonilor au fost realizate anterior, a\u0219a cum afirm\u0103 cercet\u0103torii. Cu toate acestea, \u00een lucr\u0103rile anterioare, sistemele ob\u021binute erau complexe \u0219i imperfecte, nefiind capabile s\u0103 dezv\u0103luie \u00eentregul poten\u021bial al fiec\u0103rui component.<\/p>\n<p>Una dintre ideile inspirate de predecesori a fost utilizarea unei platforme materiale bidimensionale. \u00cen acest caz, pot fi realizate dispozitive cu straturi emisie atomar sub\u021biri, care pot fi integrate cu alte materiale vdW, care ac\u021bioneaz\u0103 ca contacte (grafen) \u0219i bariere de tunelare (hBN). Mai mult, aceast\u0103 bidimensionalitate permite combinarea LED-urilor polaritoni cu materiale vdW care au propriet\u0103\u021bi magnetice neobi\u0219nuite, superconductivitate puternic\u0103 \u0219i\/sau transporturi topologice non-standard. Ca urmare a acestei combina\u021bii, se poate ob\u021bine un nou tip de dispozitiv, a c\u0103rui propriet\u0103\u021bi pot fi foarte neobi\u0219nuite. Dar, a\u0219a cum spun oamenii de \u0219tiin\u021b\u0103, acesta este subiectul unei cercet\u0103ri ulterioare.<\/p>\n<p><img decoding=\"async\" alt=\"Viitorul Li-Fi: polaritoni, excitoni, fotoni \u0219i pu\u021bin disulfid de tungsten\" src=\"\/wp-content\/uploads\/2019\/10\/474bb4f181450da715077df5ed1d92f3.jpeg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Imaginea nr. 1<\/i><\/p>\n<p>\u00cen imaginea <b>1a<\/b> este prezentat un model tridimensional al unui dispozitiv, care aminte\u0219te de o pl\u0103cint\u0103 stratificat\u0103. Ca oglind\u0103 superioar\u0103 a rezonatorului optic, este utilizat un strat de argint, iar ca strat inferior \u2014 un reflector distribuit cu 12 straturi. <i>reflector bragg*<\/i>. \u00cen zona activ\u0103 se afl\u0103 o zon\u0103 de tunelare.<\/p>\n<blockquote><p><b>Reflectorul bragg distribuit*<\/b> \u2014 o structur\u0103 format\u0103 din mai multe straturi, \u00een care indicele de refrac\u021bie al materialului se schimb\u0103 periodic perpendicular pe straturi.<\/p><\/blockquote>\n<p>Zona de tunelare este format\u0103 dintr-o heterostructur\u0103 vdW compus\u0103 dintr-un monostrat WS2 (emitent de lumin\u0103), straturi sub\u021biri de hBN de ambele p\u0103r\u021bi ale monostraturii (barier\u0103 de tunel) \u0219i grafen (electrozi transparen\u021bi pentru injectarea electronilor \u0219i a golurilor).<\/p>\n<p>Au fost ad\u0103ugate \u00eenc\u0103 dou\u0103 straturi WS2 pentru a cre\u0219te puterea total\u0103 a generatorului \u0219i, prin urmare, pentru a accentua mai mult divizarea st\u0103rilor polaritonice Rabi.<\/p>\n<p>Modul de func\u021bionare al rezonatorului este reglat prin modificarea grosimii stratului de PMMA (polimetilmetacrilat, adic\u0103 acrilic).<\/p>\n<p>Imaginea <b>1b<\/b> aceasta este o imagine a heterostructurii vdW pe suprafa\u021ba reflectorului bragg distribuit. Datorit\u0103 puterii reflectante ridicate a reflectorului bragg distribuit, care este stratul de baz\u0103, zona de tunelare din imagine are un contrast de reflexie foarte sc\u0103zut, rezult\u00e2nd astfel doar un strat gros de hBN vizibil \u00een partea de sus.<\/p>\n<p>Graficul <b>1C<\/b> reprezint\u0103 un diagram\u0103 vdW a heterostructurii \u00een geometria tunelului la deplasare. Electroluminescen\u021ba (EL) este observat\u0103 peste pragul de tensiune, c\u00e2nd nivelul Fermi al grafenului superior (inferior) este deplasat deasupra (sub) zonei de conduc\u021bie (valen\u021b\u0103) WS2, permi\u021b\u00e2nd electronului (golului) s\u0103 tunelizze \u00een zona de conduc\u021bie (valen\u021b\u0103) WS2. Aceasta creeaz\u0103 condi\u021bii favorabile pentru formarea excitonilor \u00een stratul de WS2, cu o recombinare radiativ\u0103 (emisiv\u0103) electron-gol.<\/p>\n<p>Spre deosebire de emi\u021b\u0103torii de lumin\u0103 pe baz\u0103 de jonc\u021biuni p-n, pentru care este necesar\u0103 doparea, EL de la dispozitivele de tunelare depinde exclusiv de curentul de tunel, ceea ce permite evitarea pierderilor optice \u0219i a oric\u0103ror modific\u0103ri ale rezisten\u021bei specifice cauzate de schimbarea temperaturii. \u00cen acela\u0219i timp, arhitectura tunelului permite o zon\u0103 de emisie mult mai mare \u00een compara\u021bie cu dispozitivele pe baz\u0103 de jonc\u021biuni p-n din dicalcogenide.<\/p>\n<p>Imaginea <b>1d<\/b> demonstreaz\u0103 caracteristicile electrice ale densit\u0103\u021bii curentului de tunel (<i>J<\/i>) ca func\u021bie a tensiunii de deplasare (<i>V<\/i>) \u00eentre electrozii de grafen. O cre\u0219tere brusc\u0103 a curentului at\u00e2t pentru tensiunea pozitiv\u0103, c\u00e2t \u0219i pentru cea negativ\u0103 indic\u0103 apari\u021bia curentului de tunel prin structur\u0103. La o grosime optim\u0103 a straturilor hBN (~2 nm), se observ\u0103 un curent de tunel semnificativ \u0219i o cre\u0219tere a timpului de via\u021b\u0103 al purt\u0103torilor \u00eencorpora\u021bi pentru recombinarea emisiv\u0103.<\/p>\n<p>\u00cenainte de a efectua experimentul de electroluminescen\u021b\u0103, a fost realizat\u0103 caracterizarea dispozitivului \u00een func\u021bie de capacitatea de reflec\u021bie a luminii albe cu rezolu\u021bie unghiular\u0103 pentru a confirma existen\u021ba unei leg\u0103turi puternice a excitonilor.<\/p>\n<p><img decoding=\"async\" alt=\"Viitorul Li-Fi: polaritoni, excitoni, fotoni \u0219i pu\u021bin disulfid de tungsten\" src=\"\/wp-content\/uploads\/2019\/10\/2eda878b5c3f191c79cbde03c0300d97.jpeg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Imaginea nr. 2<\/i><\/p>\n<p>\u00cen imaginea <b>2a<\/b> sunt prezentate spectre de reflec\u021bie cu rezolu\u021bie unghiular\u0103 din zona activ\u0103 a dispozitivului, demonstr\u00e2nd un comportament ce \u00eempiedic\u0103 intersectarea. De asemenea, a fost observat\u0103 fotoluminescen\u021ba (PL) la excita\u021bie non-rezonant\u0103 (460 nm), demonstr\u00e2nd o emisivitate intens\u0103 din ramura inferioar\u0103 a polaritonului \u0219i o emisivitate mai slab\u0103 din ramura superioar\u0103 a polaritonului (<b>2b<\/b>).<\/p>\n<p>Pe <b>2s<\/b> se arat\u0103 dispersia electroluminescen\u021bei polaritonului la o injec\u021bie de 0,1 \u03bcA\/micrometri p\u0103tra\u021bi. Despicarea Rabi \u0219i detuningul rezonatorului, ob\u021binute prin ajustarea modului oscilatorului (linia alb\u0103 continu\u0103 \u0219i punctat\u0103) la experimentul electroluminescent, sunt de aproximativ 33 meV \u0219i -13 meV, respectiv. Detuningul rezonatorului este definit ca \u03b4 = Ec \u2212 Ex, unde Ex este energia excitonului, iar Ec reprezint\u0103 energia fotonului rezonatorului cu impuls zero \u00een plan. Grafic <b>2d<\/b> este o sec\u021biune din dispersia electroluminescent\u0103 sub unghiuri diferite. Aici se poate observa clar dispersia modurilor polaritonilor superior \u0219i inferior cu antiparalelismul care are loc \u00een zona rezonan\u021bei excitonice.<\/p>\n<p><img decoding=\"async\" alt=\"Viitorul Li-Fi: polaritoni, excitoni, fotoni \u0219i pu\u021bin disulfid de tungsten\" src=\"\/wp-content\/uploads\/2019\/10\/b1793e981c757554ef25c319a590055f.jpeg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Imaginea nr. 3<\/i><\/p>\n<p>Pe m\u0103sur\u0103 ce curentul de tunelare cre\u0219te, intensitatea total\u0103 a EL-ului cre\u0219te. EL-ul slab de la polaritoni este observat aproape de deplasarea de prag (<b>3a<\/b>), \u00een timp ce la o deplasare suficient de mare deasupra pragului, emisia polaritonic\u0103 devine distinct\u0103 (<b>3b<\/b>).<\/p>\n<p>\u00cen imaginea <b>3s<\/b> se arat\u0103 un grafic polar al intensit\u0103\u021bii EL ca func\u021bie de unghi, ilust\u00e2nd un con \u00eengust de emisie \u00b1 15\u00b0. Diagrama de radia\u021bie r\u0103m\u00e2ne practic neschimbat\u0103 at\u00e2t pentru curentul minim (curba verde), c\u00e2t \u0219i pentru curentul maxim (curba portocalie). La <b>3d<\/b> se arat\u0103 intensitatea integrat\u0103 la diferite curen\u021bi de tunel \u00een mi\u0219care, care, dup\u0103 cum se poate observa din grafic, este suficient de liniar\u0103. Prin urmare, cre\u0219terea curentului la valori mari poate duce la dispersarea cu succes a polaritonilor de-a lungul ramurii inferioare \u0219i poate crea o diagram\u0103 de radia\u021bie extrem de \u00eengust\u0103 datorit\u0103 genera\u021biei polaritonilor. Totu\u0219i, \u00een acest experiment, acest lucru nu a fost posibil din cauza limit\u0103rii legate de ruperea dielectrica a barierei de tunel hBN. <\/p>\n<p>Punctele ro\u0219ii de pe <b>3d<\/b> arat\u0103 m\u0103sur\u0103rile unei alte m\u0103suri \u2014 eficien\u021ba quantum extern\u0103 <i>eficien\u021ba quantum*<\/i>.<\/p>\n<blockquote><p><b>Eficien\u021ba quantum*<\/b> reprezint\u0103 raportul dintre num\u0103rul fotonilor ale c\u0103ror absorb\u021bie a provocat formarea quasiparticulelor \u0219i num\u0103rul total de fotoni absorbi\u021bi.<\/p><\/blockquote>\n<p>Eficien\u021ba cuantic observat\u0103 este comparabil\u0103 cu cea a altor diode emi\u021b\u0103toare de polariton (bazate pe materiale organice, tuburi de carbon etc.). Este important de men\u021bionat c\u0103, \u00een dispozitivul studiat, grosimea stratului emi\u021b\u0103tor de lumin\u0103 este de doar 0.7 nm, \u00een timp ce \u00een alte dispozitive acest\u0103 valoare este mult mai mare. Oamenii de \u0219tiin\u021b\u0103 nu ascund faptul c\u0103 indicele de eficien\u021b\u0103 cuantic\u0103 al dispozitivului lor nu este cel mai mare, dar acesta poate fi crescut prin plasarea unui num\u0103r mai mare de monostraturi \u00een zona de tunel, separate prin straturi sub\u021biri de hBN. <\/p>\n<p>Cercet\u0103torii au verificat, de asemenea, influen\u021ba perturb\u0103rii rezonatoare asupra EL-ului polariton, fabric\u00e2nd un alt dispozitiv, dar cu o perturbare mai mare (- 43 meV).<\/p>\n<p><img decoding=\"async\" alt=\"Viitorul Li-Fi: polaritoni, excitoni, fotoni \u0219i pu\u021bin disulfid de tungsten\" src=\"\/wp-content\/uploads\/2019\/10\/fae6b828cd8d3ed6bb6ce5229f44a91d.jpeg\" style=\"display:block;margin: 0 auto;\" \/><br \/>\n<i>Imaginea nr. 4<\/i><\/p>\n<p>\u00cen imaginea <b>4a<\/b> Sunt prezentate spectrele EL cu rezolu\u021bie unghiular\u0103 a acestui dispozitiv la o densitate de curent de 0.2 \u03bcA\/mkm2. Din cauza perturb\u0103rii puternice, dispozitivul demonstreaz\u0103 un efect pronun\u021bat de g\u00e2t de sticl\u0103 \u00een EL, cu un maxim de emisie care se produce sub un unghi mare. Acest lucru este confirmat suplimentar \u00een imaginea <b>4b<\/b>, unde sunt comparate graficele polare ale acestui dispozitiv cu cele ale primului (<b>2s<\/b>).<\/p>\n<p>Pentru o mai bun\u0103 \u00een\u021belegere a nuan\u021belor cercet\u0103rii, v\u0103 recomand s\u0103 consulta\u021bi <noindex><a rel=\"nofollow\" href=\"https:\/\/arxiv.org\/pdf\/1905.12227.pdf\">raportul cercet\u0103torilor<\/a><\/noindex>.<\/p>\n<h3>Epilog<\/h3>\n<p>\nAstfel, toate observa\u021biile \u0219i m\u0103sur\u0103rile descrise anterior confirm\u0103 existen\u021ba electroluminescen\u021bei polaritonice \u00een structura vdW, integrat\u0103 \u00eentr-un microrezonator optic. Arhitectura de tunel a dispozitivului studiat asigur\u0103 injectarea electronilor\/pu\u021burilor \u0219i recombinarea \u00een monostratura WS2, care serve\u0219te drept emitent de lumin\u0103. Este important de men\u021bionat c\u0103 mecanismul de tunel al dispozitivului nu necesit\u0103 doping al componentelor, ceea ce minimizeaz\u0103 pierderile \u0219i diferitele modific\u0103ri legate de temperatur\u0103.<\/p>\n<p>S-a stabilit c\u0103 EL-ul are o direc\u021bionalitate ridicat\u0103 datorit\u0103 dispersiei rezonatoarelor. Prin urmare, \u00eembun\u0103t\u0103\u021birea calit\u0103\u021bii rezonatoarelor \u0219i o alimentare de curent mai mare vor permite cre\u0219terea eficien\u021bei diodelor emitoare de microrezonator, precum \u0219i a polaritonilor microrezonatorilor controla\u021bi electric \u0219i a laserelor fotonice.<\/p>\n<p>Aceast\u0103 lucrare a confirmat din nou c\u0103 dicarburi de tranzi\u021bie au \u00eentr-adev\u0103r propriet\u0103\u021bi unice \u0219i o gam\u0103 foarte larg\u0103 de aplica\u021bii.<\/p>\n<p>Studii \u0219i inven\u021bii similare pot influen\u021ba semnificativ dezvoltarea \u0219i r\u0103sp\u00e2ndirea tehnologiilor de transmitere a datelor prin intermediul LED-urilor \u0219i al luminii \u00een general. Printre aceste tehnologii futuriste se num\u0103r\u0103 Li-Fi, care poate oferi vitez\u0103 considerabil mai mare dec\u00e2t Wi-Fi-ul actual.<\/p>\n<p>V\u0103 mul\u021bumesc pentru aten\u021bie, r\u0103m\u00e2ne\u021bi curio\u0219i \u0219i o s\u0103pt\u0103m\u00e2n\u0103 de lucru bun\u0103, b\u0103ie\u021bi! \ud83d\ude42<\/p>\n<p>V\u0103 mul\u021bumim c\u0103 r\u0103m\u00e2ne\u021bi cu noi. V\u0103 plac articolele noastre? Dori\u021bi s\u0103 vede\u021bi mai multe materiale interesante? 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<noindex><a rel=\"nofollow\" href=\"https:\/\/habr.com\/company\/ua-hosting\/blog\/329618\/\">Cum s\u0103 construi\u021bi o infrastructur\u0103 de clas\u0103 enterprise folosind servere Dell R730xd E5-2650 v4 la pre\u021buri foarte mici de 9000 \u20ac?<\/a><\/noindex><br \/>\n<br \/>Sursa: <a content=\"nofollow\" rel=\"nofollow\" href=\"https:\/\/habr.com\/ru\/company\/ua-hosting\/blog\/469605\/\">habr.com<\/a><\/p>","protected":false,"gt_translate_keys":[{"key":"rendered","format":"html"}]},"excerpt":{"rendered":"<p>\u041d\u0430 \u043f\u0440\u043e\u0442\u044f\u0436\u0435\u043d\u0438\u0438 \u043c\u043d\u043e\u0433\u0438\u0445 \u043b\u0435\u0442 \u0443\u0447\u0435\u043d\u044b\u0435 \u0441\u043e \u0432\u0441\u0435\u0433\u043e \u043c\u0438\u0440\u0430 \u0437\u0430\u043d\u0438\u043c\u0430\u044e\u0442\u0441\u044f \u0434\u0432\u0443\u043c\u044f \u0432\u0435\u0449\u0430\u043c\u0438 \u2014 \u0438\u0437\u043e\u0431\u0440\u0435\u0442\u0430\u044e\u0442 \u0438 \u0441\u043e\u0432\u0435\u0440\u0448\u0435\u043d\u0441\u0442\u0432\u0443\u044e\u0442. \u0418 \u043f\u043e\u0440\u043e\u0439 \u043d\u0435\u044f\u0441\u043d\u043e, \u0447\u0442\u043e \u0438\u0437 \u044d\u0442\u043e\u0433\u043e \u0441\u043b\u043e\u0436\u043d\u0435\u0435. \u0412\u0437\u044f\u0442\u044c, \u043a \u043f\u0440\u0438\u043c\u0435\u0440\u0443, \u043e\u0431\u044b\u043a\u043d\u043e\u0432\u0435\u043d\u043d\u044b\u0435 \u0441\u0432\u0435\u0442\u043e\u0434\u0438\u043e\u0434\u044b, \u043a\u043e\u0442\u043e\u0440\u044b\u0435 \u043a\u0430\u0436\u0443\u0442\u0441\u044f \u043d\u0430\u043c \u0441\u0442\u043e\u043b\u044c \u043f\u0440\u043e\u0441\u0442\u044b\u043c\u0438 \u0438 \u043e\u0431\u044b\u0434\u0435\u043d\u043d\u044b\u043c\u0438, \u0447\u0442\u043e \u043c\u044b \u0438 \u043d\u0435 \u043e\u0431\u0440\u0430\u0449\u0430\u0435\u043c \u043d\u0430 \u043d\u0438\u0445 \u0432\u043d\u0438\u043c\u0430\u043d\u0438\u0435. \u041d\u043e \u0435\u0441\u043b\u0438 \u0432 \u043d\u0438\u0445 \u0434\u043e\u0431\u0430\u0432\u0438\u0442\u044c \u043d\u0435\u043c\u043d\u043e\u0433\u043e \u044d\u043a\u0441\u0438\u0442\u043e\u043d\u043e\u0432, \u0449\u0435\u043f\u043e\u0442\u043a\u0443 \u043f\u043e\u043b\u044f\u0440\u0438\u0442\u043e\u043d\u043e\u0432 \u0438 \u0434\u0438\u0441\u0443\u043b\u044c\u0444\u0438\u0434 \u0432\u043e\u043b\u044c\u0444\u0440\u0430\u043c\u0430 \u043f\u043e [&hellip;]<\/p>\n","protected":false,"gt_translate_keys":[{"key":"rendered","format":"html"}]},"author":1,"featured_media":28964,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[688],"tags":[],"class_list":["post-38607","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-administrirovanie"],"aioseo_notices":[],"aioseo_head":"\n\t\t<!-- All in One SEO 5.0.2.1 - aioseo.com -->\n\t<meta name=\"description\" content=\"\u041d\u0430 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