Taktak I, Kapfer M, Nath J, Roulleau P, Acciai M, Splettstoesser J, Farrer I, Ritchie D A, Glattli D C
Université Paris-Saclay, CEA, CNRS, SPEC, 91191, Gif-sur-Yvette, Cedex, France.
Department of Microtechnology and Nanoscience - MC2, Chalmers University of Technology, S-412 96, Göteborg, Sweden.
Nat Commun. 2022 Oct 4;13(1):5863. doi: 10.1038/s41467-022-33603-3.
Quasi-particles are elementary excitations of condensed matter quantum phases. Demonstrating that they keep quantum coherence while propagating is a fundamental issue for their manipulation for quantum information tasks. Here, we consider anyons, the fractionally charged quasi-particles of the Fractional Quantum Hall Effect occurring in two-dimensional electronic conductors in high magnetic fields. They obey anyonic statistics, intermediate between fermionic and bosonic. Surprisingly, anyons show large quantum coherence when transmitted through the localized states of electronic Fabry-Pérot interferometers, but almost no quantum interference when transmitted via the propagating states of Mach-Zehnder interferometers. Here, using a novel interferometric approach, we demonstrate that anyons do keep quantum coherence while propagating. Performing two-particle time-domain interference measurements sensitive to the two-particle Hanbury Brown Twiss phase, we find 53 and 60% visibilities for anyons with charges e/5 and e/3. Our results give a positive message for the challenge of performing controlled quantum coherent braiding of anyons.
准粒子是凝聚态量子相的基本激发。证明它们在传播时保持量子相干性是利用它们执行量子信息任务的一个基本问题。在此,我们考虑任意子,即在高磁场二维电子导体中出现的分数量子霍尔效应中的分数带电准粒子。它们遵循任意子统计,介于费米子和玻色子之间。令人惊讶的是,任意子在通过电子法布里 - 珀罗干涉仪的局域态传输时表现出大的量子相干性,但在通过马赫 - 曾德尔干涉仪的传播态传输时几乎没有量子干涉。在此,我们使用一种新颖的干涉测量方法,证明任意子在传播时确实保持量子相干性。通过执行对两粒子汉伯里·布朗·特威斯相位敏感的双粒子时域干涉测量,我们发现电荷为e/5和e/3的任意子的可见度分别为53%和60%。我们的结果为执行任意子的可控量子相干编织这一挑战给出了积极的信息。