Braun Center for Sub-Micron Research, Department of Condensed Matter Physics, Weizmann Institute of Science, Rehovot 76100, Israel.
Science. 2022 Jan 14;375(6577):193-197. doi: 10.1126/science.abg6116. Epub 2021 Dec 23.
Quantum Hall states can harbor exotic quantum phases. The nature of these states is reflected in the gapless edge modes owing to “bulk-edge” correspondence. The most studied putative non-abelian state is the spin-polarized filling factor (ν) = 5/2, which permits different topological orders that can be abelian or non-abelian. We developed a method that interfaces the studied quantum state with another state and used it to identify the topological order of ν = 5/2 state. The interface between two half-planes, one hosting the ν = 5/2 state and the other an integer ν = 3 state, supports a fractional ν = 1/2 charge mode and a neutral Majorana mode. The counterpropagating chirality of the Majorana mode, probed by measuring partition noise, is consistent with the particle-hole Pfaffian (PH-Pf) topological order and rules out the anti-Pfaffian order.
量子霍尔态可以容纳奇异的量子相。这些态的性质反映在无带隙的边缘模式中,这是由于“体边对应”。最受研究的假定非阿贝尔态是极化填充因子(ν)= 5/2,它允许不同的拓扑序,可以是阿贝尔或非阿贝尔的。我们开发了一种将研究中的量子态与另一个态连接起来的方法,并利用它来确定 ν = 5/2 态的拓扑序。两个半平面之间的界面,一个承载 ν = 5/2 态,另一个承载整数 ν = 3 态,支持分数 ν = 1/2 电荷模式和中性马约拉纳模式。通过测量分区噪声探测到的马约拉纳模式的反向传播手性,与粒子空穴 Pfaffian(PH-Pf)拓扑序一致,并排除了反 Pfaffian 序。