Does shot noise always provide the quasiparticle charge?
Abstract
The fractional charge of quasiparticles is a fundamental feature of quantum Hall effect (QHE) States. The charge has long been measured via shot-noise at moderate temperatures (>30mK), with the Fano factor revealing the charge of the quasiparticles. However, at sufficiently low temperatures (10mK), we consistently find being equal to the bulk filling factor, . Surprisingly, noise with is also observed on intermediate conductance plateaus in the transmission of the quantum point contact (QPC), where shot noise is not expected. We attribute the unexpected Fano factor to upstream neutral modes, which proliferate at the lowest spinless Landau level. The universality of the Fano factor is also confirmed when the edge modes do not conform to the bulk. For this, the ubiquitous edge modes at the periphery of the sample are replaced by artificially constructed 'interface modes', propagating at the interface between two adjoined QHE states: the tested state and a different state. We present a new theoretical paradigm based on an interplay between charge and neutral modes, explaining the origin of the universal Fano factor.
Cite
@article{arxiv.2111.05575,
title = {Does shot noise always provide the quasiparticle charge?},
author = {Sourav Biswas and Rajarshi Bhattacharyya and Hemanta Kumar Kundu and Ankur Das and Moty Heiblum and Vladimir Umansky and Moshe Goldstein and Yuval Gefen},
journal= {arXiv preprint arXiv:2111.05575},
year = {2023}
}
Comments
43 pages, 4 main figures, supplementary material