Current-Induced Cooling Phenomenon in a Two-Dimensional Electron Gas Under a Magnetic Field

被引:0
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作者
Naomi Hirayama
Akira Endo
Kazuhiro Fujita
Yasuhiro Hasegawa
Naomichi Hatano
Hiroaki Nakamura
Ryōen Shirasaki
Kenji Yonemitsu
机构
[1] Tokyo University of Science,Department of Materials Science and Technology, Faculty of Industrial Science and Technology
[2] University of Tokyo,Institute for Solid State Physics
[3] Saitama University,Department of Environmental Science and Technology
[4] University of Tokyo,Institute of Industrial Science
[5] National Institute for Fusion Science,Fundamental Physics Simulation Research Division
[6] Yokohama National University,Department of Physics
[7] Chuo University,Department of Physics
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关键词
Thermoelectric power; Thermomagnetic effect; Ettingshausen effect; Two-dimensional electron gas; Quantum Hall system; Finite-difference method;
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摘要
We investigate the spatial distribution of temperature induced by a dc current in a two-dimensional electron gas (2DEG) subjected to a perpendicular magnetic field. We numerically calculate the distributions of the electrostatic potential ϕ and the temperature T in a 2DEG enclosed in a square area surrounded by insulated-adiabatic (top and bottom) and isopotential-isothermal (left and right) boundaries (with ϕleft<ϕright and Tleft=Tright), using a pair of nonlinear Poisson equations (for ϕ and T) that fully take into account thermoelectric and thermomagnetic phenomena, including the Hall, Nernst, Ettingshausen, and Righi-Leduc effects. We find that, in the vicinity of the left-bottom corner, the temperature becomes lower than the fixed boundary temperature, contrary to the naive expectation that the temperature is raised by the prevalent Joule heating effect. The cooling is attributed to the Ettingshausen effect at the bottom adiabatic boundary, which pumps up the heat away from the bottom boundary. In order to keep the adiabatic condition, downward temperature gradient, hence the cooled area, is developed near the boundary, with the resulting thermal diffusion compensating the upward heat current due to the Ettingshausen effect.
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页码:132 / 153
页数:21
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