


Volume 120, Nº 5-6 (2024)
Articles
K voprosu o plazmenno-pylevykh protsessakh v fizike komet
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Sluchaynaya lazernaya generatsiya v usloviyakh dissipativnogo tunnelirovaniya v setevom kvantovom materiale
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Indutsirovannoe fononami ushirenie spektral'noy linii v primesnom stekle v ramkakh modeli rezonansnykh kolebatel'nykh mod: tetra-tret-butilterrilen v poliizobutilene
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Gibridnoe fotovozbuzhdenie sverkhchistogo almaza femtosekundnymi lazernymi impul'sami srednego IK-diapazona
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Samozakhvat lazernogo sveta dlya ul'trarelyativistskikh intensivnostey
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Odnoelektronnyy spektr korotkoperiodnoy InAs/GaSb sverkhreshetki s interfeysnoy kompensatsiey napryazheniy
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Vklad ostsillyatsiy urovnya Fermi v shubnikovskie i magnito-mezhpodzonnye ostsillyatsii v odinochnykh kvantovykh yamakh HgTe
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Lokal'naya diagnostika spinovykh defektov v obluchennykh SiC-diodakh Shottki
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Crossover from relativistic to non-relativistic net magnetization for MnTe altermagnet candidate
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We experimentally study magnetization reversal curves for MnTe single crystals, which is the altermagnetic candidate. Above 85 K temperature, we confirm the antiferromagnetic behavior of magnetization M, which is known for α-MnTe. Below 85 K, we observe anomalous low-field magnetization behavior, which is accompanied by the sophisticated M(α) angle dependence with beating pattern as the interplay between M(α) maxima and minima: in low fields, M(α) shows ferromagnetic-like 180° periodicity, while at high magnetic fields, the periodicity is changed to the 90° one. This angle dependence is the most striking result of our experiment, while it can not be expected for standard magnetic systems. In contrast, in altermagnets, symmetry allows ferromagnetic behavior only due to the spin-orbit coupling. Thus, we claim that our experiment shows the effect of weak spin-orbit coupling in MnTe, with crossover from relativistic to non-relativistic net magnetization, and, therefore, we experimentally confirm altermagnetism in MnTe.



Novye vozmozhnosti dlya analiza deformatsiy koleblyushchikhsya kristallov s pomoshch'yu rentgenovskoy vizualizatsii krivoy kachaniya
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Izmerenie secheniya deleniya yader 237Np neytronami s energiyami 0.3–500 MeV
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Nablyudenie polyarizatsii Λ-giperonov, obrazovannykh pri vzaimodeystvii K−-mezonov s yadrami
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Pole tyagoteniya sploshnoy samogravitiruyushchey sredy i “temnaya materiya”
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Otsenka sostava kosmicheskikh luchey sverkhvysokikh energiy metodom myuonnoy korrelyatsii po dannym Yakutskoy ustanovki ShAL
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Interferentsionnye rezonansy fotona i nelineynosti v angarmonicheskom ostsillyatore
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O fleksoelektrichestve v mnogodomennom segnetoelektrike
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Obobshchennaya teorema Blokha i topologiya zonnoy struktury
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Magnonnyy sverkhtok i sbros fazy v plenke zhelezo-ittrievogo granata
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Transport elektronov v fotokatodakh kak otklik na indutsiruyushchiy fotoeffekt lazernyy impul's
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Sverkhdolgozhivushchie neytral'nye vozbuzhdeniya laflinovskoy zhidkosti 1/3
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Optically controlled fine-tuning phase shift cell based on thin-film Ge2Sb2Te5 for light beam phase modulation
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Presented the experimental study of free-space optical control of the optical beam phase shift caused by the formation of a layered structure in an elementary controllable cell made of phase-change material Ge2Sb2Te5 sub jected to the controlling effect of pulsed laser radiation. The phase change of the signal optical beam passing through the controlled cell from phase-change material relative to the control beam in the Jamin interferometer is demonstrated.



Issledovanie prostranstvennogo raspredeleniya izlucheniya plazmy Kh-pinchey s pomoshch'yu kodiruyushchey apertury novogo tipa
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Spektr neuprugikh stolknoveniy medlennykh protonov v oblasti molekulyarnykh vozbuzhdeniy vody
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Subteragertsovyy otklik planarnykh fosfolipidnykh membran v neuprugom rasseyanii sveta
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