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Электронный каталог: Alpomishev, E. Kh. - Quantum Hall and Shubnikov-de Haas Effects in Graphene within Non-Markovian Langevin Approach
Alpomishev, E. Kh. - Quantum Hall and Shubnikov-de Haas Effects in Graphene within Non-Markovian Langevin Approach
Статья
Автор: Alpomishev, E. Kh.
Symmetry [Electronic resource]: Quantum Hall and Shubnikov-de Haas Effects in Graphene within Non-Markovian Langevin Approach
б.г.
ISBN отсутствует
Автор: Alpomishev, E. Kh.
Symmetry [Electronic resource]: Quantum Hall and Shubnikov-de Haas Effects in Graphene within Non-Markovian Langevin Approach
б.г.
ISBN отсутствует
Статья
Alpomishev, E.Kh.
Quantum Hall and Shubnikov-de Haas Effects in Graphene within Non-Markovian Langevin Approach / E.Kh.Alpomishev, G.G.Adamian, N.V.Antonenko // Symmetry [Electronic resource]. – 2024. – Vol. 16, No. 1. – P. 7. – URL: https://doi.org/10.3390/sym16010007. – Bibliogr.: 50.
The theory of open quantum systems is applied to study galvano-, thermo-magnetic, and magnetization phenomena in axial symmetric two-dimensional systems. Charge carriers are considered as quantum particles interacting with the environment through a one-body (mean-field) mechanism. The dynamics of charge carriers is affected by the average collision time that takes effectively into account two-body effects. The functional dependencies of the average collision time on the external uniform magnetic field, concentration and temperature are phenomenologically treated. Analytical expressions are obtained for the tensors of electric and thermal conductivity and/or resistivity. The developed theory is applied to describe the Shubnikov-de Haas oscillations and quantum Hall effect in graphene and GaAs/Al&sub(𝑥)Ga&sub(1−𝑥)As heterostructure. The dependencies of magnetization and thermal conductivity on the magnetic field are also predicted.
ОИЯИ = ОИЯИ (JINR)2024
Спец.(статьи,препринты) = С 326.4 - Коллективные эффекты. Сверхизлучение. Квантовая оптика. Эффект Холла
Бюллетени = 16/024
Alpomishev, E.Kh.
Quantum Hall and Shubnikov-de Haas Effects in Graphene within Non-Markovian Langevin Approach / E.Kh.Alpomishev, G.G.Adamian, N.V.Antonenko // Symmetry [Electronic resource]. – 2024. – Vol. 16, No. 1. – P. 7. – URL: https://doi.org/10.3390/sym16010007. – Bibliogr.: 50.
The theory of open quantum systems is applied to study galvano-, thermo-magnetic, and magnetization phenomena in axial symmetric two-dimensional systems. Charge carriers are considered as quantum particles interacting with the environment through a one-body (mean-field) mechanism. The dynamics of charge carriers is affected by the average collision time that takes effectively into account two-body effects. The functional dependencies of the average collision time on the external uniform magnetic field, concentration and temperature are phenomenologically treated. Analytical expressions are obtained for the tensors of electric and thermal conductivity and/or resistivity. The developed theory is applied to describe the Shubnikov-de Haas oscillations and quantum Hall effect in graphene and GaAs/Al&sub(𝑥)Ga&sub(1−𝑥)As heterostructure. The dependencies of magnetization and thermal conductivity on the magnetic field are also predicted.
ОИЯИ = ОИЯИ (JINR)2024
Спец.(статьи,препринты) = С 326.4 - Коллективные эффекты. Сверхизлучение. Квантовая оптика. Эффект Холла
Бюллетени = 16/024