中文

在分数量子霍尔效应中对不同任何子进行的选择性编织

介观与纳米尺度物理 2026-03-13 v1 强关联电子

摘要

分数量子霍尔态可以容纳具有不同交换统计特性的多种任何子类型。 Depending on the anyon type, exchanging two quasiparticles can impart a phase to the many-body wave function or even transform it into a different state. Here, we realize a gate-tunable Fabry-P\'erot interferometer with an embedded antidot that provides local control over the number of anyons within the interference loop. By independently tuning the magnetic field, carrier densities across the device, and the antidot potential, we access regimes in which localized anyons form reproducibly and measure the associated statistical phases eiθbraide^{i \theta_\mathrm{braid}}. We resolve braiding phases of θbraid=π\theta_{\mathrm{braid}}=\pi and θbraid=π2\theta_{\mathrm{braid}}=\frac{\pi}{2}, which we attribute to e/2e/2 quasiparticles encircling either e/2e/2 or e/4e/4 quasiparticles, respectively. We further observe switching between different anyon occupancies of the antidot over time, directly resolving individual anyon tunnelling events into the interference loop. Similar behavior occurs at filling factor one third. Our work addresses one of the two key challenges in observing non-Abelian braiding, which requires control of both localized and interfering anyon types.

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引用

@article{arxiv.2603.11162,
  title  = {Selective braiding of different anyons in the even-denominator fractional quantum Hall effect},
  author = {Jehyun Kim and Amit Shaer and Ravi Kumar and Alexey Ilin and Kenji Watanabe and Takashi Taniguchi and Ady Stern and David F. Mross and Yuval Ronen},
  journal= {arXiv preprint arXiv:2603.11162},
  year   = {2026}
}