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整数量子霍尔边缘通道中的自旋选择性平衡

Spin-Selective Equilibration among Integer Quantum Hall Edge Channels.

作者信息

Nicolí Giorgio, Adam Christoph, Röösli Marc P, Märki Peter, Scharnetzky Jan, Reichl Christian, Wegscheider Werner, Ihn Thomas M, Ensslin Klaus

机构信息

Solid State Physics Laboratory, ETH Zürich, 8093 Zürich, Switzerland.

出版信息

Phys Rev Lett. 2022 Feb 4;128(5):056802. doi: 10.1103/PhysRevLett.128.056802.

Abstract

The equilibration between quantum Hall edge modes is known to depend on the disorder potential and the steepness of the edge. Modern samples with higher mobilities and setups with lower electron temperatures call for a further exploration of the topic. We develop a framework to systematically measure and analyze the equilibration of many (up to 8) integer edge modes. Our results show that spin-selective coupling dominates even for non-neighboring channels with parallel spin. Changes in magnetic field and bulk density let us control the equilibration until it is almost completely suppressed and dominated only by individual microscopic scatterers. This method could serve as a guideline to investigate and design improved devices, and to study fractional and other exotic states.

摘要

已知量子霍尔边缘模式之间的平衡取决于无序势和边缘的陡峭程度。具有更高迁移率的现代样品以及更低电子温度的实验装置需要对该主题进行进一步探索。我们开发了一个框架来系统地测量和分析多达8个整数边缘模式的平衡。我们的结果表明,即使对于具有平行自旋的非相邻通道,自旋选择性耦合也占主导地位。磁场和体密度的变化使我们能够控制平衡,直到它几乎被完全抑制,仅由单个微观散射体主导。这种方法可以作为研究和设计改进器件以及研究分数态和其他奇异态的指导方针。

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