论文标题
在手性量子厅边缘状态下,启用了超电流的Andreev反思
Supercurrent-enabled Andreev reflection in a chiral quantum Hall edge state
论文作者
论文摘要
靠近S波超导体体验的手性量子大厅(QH)边缘状态引起的超导相关性。最近的实验已经观察到QH边缘状态中接近耦合通过Andreev反射过程的签名的影响。我们通过用多体汉密尔顿(Hamiltonian)对系统进行建模,该系统由S-Wave超导体组成,以自旋轨道耦合和磁场为由,这是由多体型汉密尔顿(S-Wave)超导体组成的,这是这种效应背后的微观理论,该系统由电子隧道耦合到QH边缘状态。通过整合超导体,我们在QH边缘状态下获得了有效的哈密顿配对。我们阐明了在手性边缘状态下非局部超导相关性的定性外观,并通过分析预测低能(Pauli阻断)的电子孔转化的抑制作用,而负电阻是该设置中Andreev反射的实验性特征。特别是,我们展示了超导体的两个表面现象,即Rashba自旋轨道耦合以及由于Meissner效应而引起的超电流,对于Andreev的反射至关重要。我们的工作为实现Majorana零模型及其偏僻的概括提供了有希望的途径。
A chiral quantum Hall (QH) edge state placed in proximity to an s-wave superconductor experiences induced superconducting correlations. Recent experiments have observed the effect of proximity-coupling in QH edge states through signatures of the mediating process of Andreev reflection. We present the microscopic theory behind this effect by modeling the system with a many-body Hamiltonian, consisting of an s-wave superconductor, subject to spin-orbit coupling and a magnetic field, which is coupled by electron tunneling to a QH edge state. By integrating out the superconductor we obtain an effective pairing Hamiltonian in the QH edge state. We clarify the qualitative appearance of nonlocal superconducting correlations in a chiral edge state and analytically predict the suppression of electron-hole conversion at low energies (Pauli blocking) and negative resistance as experimental signatures of Andreev reflection in this setup. In particular, we show how two surface phenomena of the superconductor, namely Rashba spin-orbit coupling and a supercurrent due to the Meissner effect, are essential for the Andreev reflection. Our work provides a promising pathway to the realization of Majorana zero-modes and their parafermionic generalizations.