Li Tingxin, Wang Pengjie, Fu Hailong, Du Lingjie, Schreiber Kate A, Mu Xiaoyang, Liu Xiaoxue, Sullivan Gerard, Csáthy Gábor A, Lin Xi, Du Rui-Rui
International Center for Quantum Materials, School of Physics, Peking University, Beijing 100871, China.
Collaborative Innovation Center of Quantum Matter, Beijing 100871, China.
Phys Rev Lett. 2015 Sep 25;115(13):136804. doi: 10.1103/PhysRevLett.115.136804.
We report on the observation of a helical Luttinger liquid in the edge of an InAs/GaSb quantum spin Hall insulator, which shows characteristic suppression of conductance at low temperature and low bias voltage. Moreover, the conductance shows power-law behavior as a function of temperature and bias voltage. The results underscore the strong electron-electron interaction effect in transport of InAs/GaSb edge states. Because of the fact that the Fermi velocity of the edge modes is controlled by gates, the Luttinger parameter can be fine tuned. Realization of a tunable Luttinger liquid offers a one-dimensional model system for future studies of predicted correlation effects.
我们报道了在InAs/GaSb量子自旋霍尔绝缘体边缘观察到螺旋卢廷格液体,其在低温和低偏置电压下表现出特征性的电导抑制。此外,电导随温度和偏置电压呈现幂律行为。这些结果强调了InAs/GaSb边缘态输运中强电子-电子相互作用效应。由于边缘模式的费米速度由栅极控制,卢廷格参数可以进行微调。可调谐卢廷格液体的实现为未来研究预测的关联效应提供了一个一维模型系统。