Thermal dissipation of the quantum spin Hall edge states in HgTe/CdTe quantum well

Author:

Fang Jing-YunORCID,Zhuang Yu-Chen,Guo Ai-Min,Sun Qing-Feng

Abstract

Abstract Quantum spin Hall effect is characterized by topologically protected helical edge states. Here we study the thermal dissipation of helical edge states by considering two types of dissipation sources. The results show that the helical edge states are dissipationless for normal dissipation sources with or without Rashba spin–orbit coupling in the system, but they are dissipative for spin dissipation sources. Further studies on the energy distribution show that electrons with spin-up and spin-down are both in their own equilibrium without dissipation sources. Spin dissipation sources can couple the two subsystems together to induce voltage drop and non-equilibrium distribution, leading to thermal dissipation, while normal dissipation sources cannot. With the increase of thermal dissipation, the subsystems of electrons with spin-up and spin-down evolve from non-equilibrium finally to mutual equilibrium. In addition, the effects of disorder on thermal dissipation are also discussed. Our work provides clues to reduce thermal dissipation in the quantum spin Hall systems.

Funder

NSF-China

Hunan Provincial Science Fund for Distinguished Young Scholars

Innovation Program for Quantum Science and Technology

Strategic Priority Research Program of Chinese Academy of Sciences

Publisher

IOP Publishing

Subject

Condensed Matter Physics,General Materials Science

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