Magneto-transport properties of monolayer borophene in perpendicular magnetic field: influence of electron-phonon interaction

Ta T. Tho, T. Huynh, V. C. Nguyen, M. Luong, D. Bui
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Abstract

The magneto-transport properties of a borophene monolayer in a perpendicular magnetic field B are studied via calculating the conductivity tensor and resistance under electron-optical phonon interaction by using the linear response theory. Numerical results are obtained and discussed for some specific parameters. The magnetic field-dependent longitudinal conductivity shows the magneto-phonon resonance effect that describes the transition of electrons between Landau levels by absorbing/emitting an optical phonon. The Hall conductivity increases first and then decreases with the magnetic field strength. Also, the longitudinal resistance increases significantly with increasing temperature, which shows the metal behaviour of the material. Practically, the observed magneto-phonon resonance can be applied to experimentally determine some material parameters, such as the distance between Landau levels and the optical phonon energy.
垂直磁场中单层硼罗芬的磁输运性质:电子-声子相互作用的影响
利用线性响应理论,通过计算电子-光学声子相互作用下的电导率张量和电阻,研究了硼罗芬单层在垂直磁场B中的磁输运性质。对一些具体参数进行了数值计算并进行了讨论。磁场相关的纵向电导率显示了磁声子共振效应,该效应描述了电子通过吸收/发射光学声子在朗道能级之间的跃迁。霍尔电导率随磁场强度先增大后减小。同时,纵向电阻随温度的升高而显著增加,显示了材料的金属特性。实际上,观测到的磁声子共振可以用于实验确定一些材料参数,如朗道能级与光学声子能量之间的距离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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