论文标题

量子大厅效应的边缘模式中的能量放松

Energy relaxation in edge modes in the quantum Hall effect

论文作者

Rosenblatt, Amir, Konyzheva, Sofia, Lafont, Fabien, Schiller, Noam, Park, Jinhong, Snizhko, Kyrylo, Heiblum, Moty, Oreg, Yuval, Umansky, Vladimir

论文摘要

量子系统中能量流的研究补充了通用电导测量提供的信息。预测并在实验证明的一维(1D)弹道模式下的热流量量极限具有玻色子,费米子和分数为Anyons的通用值。在非亚伯利亚州预计这一价值的一部分。然而,仍然以1D模式以沿繁殖长度的能量放松的开放问题仍然存在。在这里,我们介绍了一种新型的实验设置,该设置可测量量子厅效应(QHE)手性1D模式中的能量松弛。从加热储层发出的边缘模式通过位于其路径的量子点接触(QPC)分配。所得噪声允许在QPC位置确定“有效温度”。我们在所有经过测试的QHE状态下发现能量放松,是整数或分数。然而,发现在粒子状状态下的松弛是温和的,在孔结合状态下显着。

Studies of energy flow in quantum systems complement the information provided by common conductance measurements. The quantum limit of heat flow in one dimensional (1D) ballistic modes was predicted, and experimentally demonstrated, to have a universal value for bosons, fermions, and fractionally charged anyons. A fraction of this value is expected in non-abelian states. Nevertheless, open questions about energy relaxation along the propagation length in 1D modes remain. Here, we introduce a novel experimental setup that measures the energy relaxation in chiral 1D modes of the quantum Hall effect (QHE). Edge modes, emanating from a heated reservoir, are partitioned by a quantum point contact (QPC) located at their path. The resulting noise allows a determination of the 'effective temperature' at the location of the QPC. We found energy relaxation in all the tested QHE states, being integers or fractional. However, the relaxation was found to be mild in particle-like states, and prominent in hole-conjugate states.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源