paper

Synthesizing resistance plateau at the first Landau level confined in a quantum point contact

arXiv:2301.07488

Abstract

A comprehensive understanding of quantum Hall edge transmission, especially the hole-conjugate of a Laughlin state such as a state, is critical for advancing fundamental quantum Hall physics and enhancing the design of quantum Hall edge interferometry. In this study, we report a robust intermediate resistance quantization in a quantum point contact (QPC) when the bulk is set at the fractional filling quantum Hall state. Our results suggest the occurrence of two equilibration processes. First, the co-propagating edges moving along a soft QPC arm confining potential fully equilibrate and act as a single edge mode. Second, the edge mode is further equilibrated with an integer edge mode formed in the QPC. The complete mixing between them results in a diagonal resistance value quantized at . Similar processes occur for a bulk filling , leading to an intermediate resistance quantization.

typo in the formula has been fixed, 10 pages including supplementary material