论文标题
量子大厅边缘的超导性和费米子耗散
Superconductivity and fermionic dissipation in quantum Hall edges
论文作者
论文摘要
分数量子大厅边缘的接近诱导的超导性是提出派象零模型的拟议实现的先决条件。最近的实验工作[Gül等人,物理学。 Rev. X 12,021057(2022)]以交叉的Andreev反射信号的形式提供了这种耦合的证据,其中电子从一种手性模式进入了超导体,并将其作为孔反射到另一种孔中,反向产物模式。值得注意的是,尽管Andreev反射的概率很小,但对于$ν= 1/3 $分数量子厅的边缘比整数更强。从理论上讲,我们解释了这些发现,包括两种情况下信号的相对强度及其质量不同的温度依赖性。我们模型的一个重要部分是边缘模式与磁场诱导的Abrikosov涡流核心中的正常状态的耦合,该磁场提供了费米子浴。我们发现,分数案例中较强的越过Andreev反射源于屈服于费米子浴场和分数量子厅边缘之间的电子隧穿。我们的理论表明,仅对Andreev反射信号的观察结果并不一定意味着存在局部派层零模型,并提出了方法来从低温状态下从该信号的行为中识别出它们的存在。
Proximity-induced superconductivity in fractional quantum Hall edges is a prerequisite to proposed realizations of parafermion zero-modes. A recent experimental work [Gül et al., Phys. Rev. X 12, 021057 (2022)] provided evidence for such coupling, in the form of a crossed Andreev reflection signal, in which electrons enter a superconductor from one chiral mode and are reflected as holes to another, counter-propagating chiral mode. Remarkably, while the probability for crossed Andreev reflection was small, it was stronger for $ν=1/3$ fractional quantum Hall edges than for integer ones. We theoretically explain these findings, including the relative strengths of the signals in the two cases and their qualitatively different temperature dependencies. An essential part of our model is the coupling of the edge modes to normal states in the cores of Abrikosov vortices induced by the magnetic field, which provide a fermionic bath. We find that the stronger crossed Andreev reflection in the fractional case originates from the suppression of electronic tunneling between the fermionic bath and the fractional quantum Hall edges. Our theory shows that the mere observation of crossed Andreev reflection signal does not necessarily imply the presence of localized parafermion zero-modes, and suggests ways to identify their presence from the behavior of this signal in the low temperature regime.