N
Nikolay N. Mikhailov
Researcher at Russian Academy of Sciences
Publications - 285
Citations - 2413
Nikolay N. Mikhailov is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Quantum well & Molecular beam epitaxy. The author has an hindex of 23, co-authored 250 publications receiving 2099 citations. Previous affiliations of Nikolay N. Mikhailov include Tomsk State University & Novosibirsk State University.
Papers
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Journal ArticleDOI
Molecular-beam epitaxy of mercury-cadmium-telluride solid solutions on alternative substrates
Yu. G. Sidorov,S. A. Dvoretskii,V. S. Varavin,Nikolay N. Mikhailov,M. V. Yakushev,I. V. Sabinina +5 more
TL;DR: Growth processes for heteroepitaxial structures based on a mercury-cadmium-telluride (MCT) solid solution deposited on GaAs and Si alternative substrates by molecular-beam epitaxy were considered in this article.
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HgCdTe-based heterostructures for terahertz photonics
Sandra Ruffenach,A. M. Kadykov,A. M. Kadykov,Vladimir Rumyantsev,Vladimir Rumyantsev,Jeremie Torres,D. Coquillat,Dmytro B. But,Sergey S. Krishtopenko,Sergey S. Krishtopenko,Christophe Consejo,Wojciech Knap,S. Winnerl,Manfred Helm,Manfred Helm,Mikhail A. Fadeev,Mikhail A. Fadeev,Nikolay N. Mikhailov,Nikolay N. Mikhailov,S. A. Dvoretskii,Vladimir I. Gavrilenko,Vladimir I. Gavrilenko,S. V. Morozov,S. V. Morozov,Frederic Teppe +24 more
TL;DR: In this paper, the effect of HgCdTe on the terahertz photoconductive response close to the charge neutrality point and at the magnetic field driven topological phase transition was investigated.
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Nonlocal resistance and its fluctuations in microstructures of band-inverted HgTe/(Hg,Cd)Te quantum wells
G. Grabecki,Jerzy Wróbel,Jerzy Wróbel,M. Czapkiewicz,Łukasz Cywiński,Sylwia Gieraltowska,Elzbieta Guziewicz,M. S. Zholudev,M. S. Zholudev,V. I. Gavrilenko,Nikolay N. Mikhailov,S. A. Dvoretski,Frederic Teppe,Wojciech Knap,Wojciech Knap,Tomasz Dietl,Tomasz Dietl,Tomasz Dietl +17 more
TL;DR: In this paper, the authors investigate transport in gated microsctructures containing a band-inverted HgTe/HgCd${}_{03}$Cd{}_{07}$Te quantum well and show that the topological protection length is much shorter than the channel length.
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Temperature-Induced Topological Phase Transition in HgTe Quantum Wells
A. M. Kadykov,Sergey S. Krishtopenko,Benoit Jouault,Wilfried Desrat,Wojciech Knap,Sandra Ruffenach,Christophe Consejo,Jeremie Torres,S. V. Morozov,Nikolay N. Mikhailov,Nikolay N. Mikhailov,S. A. Dvoretskii,S. A. Dvoretskii,Frederic Teppe +13 more
TL;DR: By measuring the temperature dependence of B_{c}, this work directly extracts the critical temperature T_{c} at which the bulk band gap vanishes and the topological phase transition occurs, and above this critical temperature, the opening of a trivial gap is clearly observed.
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Cyclotron resonance and interband optical transitions in HgTe/CdTe(0 1 3) quantum well heterostructures
A. V. Ikonnikov,M. S. Zholudev,K. E. Spirin,A. A. Lastovkin,K. V. Maremyanin,V. Ya. Aleshkin,Vladimir I. Gavrilenko,O. Drachenko,Manfred Helm,J. Wosnitza,Michel Goiran,Nikolay N. Mikhailov,S. A. Dvoretskii,Frederic Teppe,Nina Diakonova,Christophe Consejo,B. Chenaud,Wojciech Knap +17 more
TL;DR: In this paper, the cyclotron mass of 2D electrons in HgTe/CdxHg1−xTe (0 1 3) quantum well (QW) heterostructures with inverted band structure has been thoroughly studied in quasiclassical magnetic fields versus the electron concentration varied using the persistent photoconductivity effect.