English

Quantized charge fractionalization at quantum Hall Y junctions in the disorder-dominated regime

Mesoscale and Nanoscale Physics 2021-01-27 v1

Abstract

Fractionalization is a phenomenon where an elementary excitation partitions into several pieces. This picture explains non-trivial transport through a junction of one-dimensional edge channels defined by topologically distinct quantum Hall states, for example, a hole-conjugate state at Landau-level filling factor ν\nu = 2/3. Here we employ a time-resolved scheme to identify an elementary fractionalization process; injection of charge q from a non-interaction region into an interacting and scattering region of one-dimensional channels results in the formation of a collective excitation with charge (1r)q(1-\textit{r})\textit{q} by reflecting fractionalized charge rq\textit{rq}. The fractionalization factors, r\textit{r} = 0.34±\pm0.03 for ν\nu = 2/3 and r\textit{r} = 0.49±\pm0.03 for ν\nu = 2, are consistent with the quantized values of 1/3 and 1/2, respectively, which are expected in the disorder dominated regime. The scheme can be used for generating and transporting fractionalized charges with a well-defined time course along a well-defined path.

Keywords

Cite

@article{arxiv.2012.01222,
  title  = {Quantized charge fractionalization at quantum Hall Y junctions in the disorder-dominated regime},
  author = {Chaojing Lin and Masayuki Hashisaka and Takafumi Akiho and Koji Muraki and Toshimasa Fujisawa},
  journal= {arXiv preprint arXiv:2012.01222},
  year   = {2021}
}

Comments

5 figures, 9 pages

R2 v1 2026-06-23T20:40:22.202Z