Andreev reflection of quantum Hall states through a quantum point contact

Fuente: arXiv
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Auteurs principaux: Hatefipour, Mehdi, Cuozzo, Joseph J., Levy, Ido, Strickland, William M., Langone, Dylan, Rossi, Enrico, Shabani, Javad
Format: Preprint
Publié: 2023
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author Hatefipour, Mehdi
Cuozzo, Joseph J.
Levy, Ido
Strickland, William M.
Langone, Dylan
Rossi, Enrico
Shabani, Javad
author_facet Hatefipour, Mehdi
Cuozzo, Joseph J.
Levy, Ido
Strickland, William M.
Langone, Dylan
Rossi, Enrico
Shabani, Javad
contents We investigate the interplay between the quantum Hall (QH) effect and superconductivity in InAs surface quantum well (SQW)/NbTiN heterostructures using a quantum point contact (QPC). We use QPC to control the proximity of the edge states to the superconductor. By measuring the upstream and downstream resistances of the device, we investigate the efficiency of Andreev conversion at the InAs/NbTiN interface. Our experimental data is analyzed using the Landauer-Buttiker formalism, generalized to allow for Andreev reflection processes. We show that by varying the voltage of the QPC, $V_{QPC}$, the average Andreev reflection, $A$, at the QH-SC interface can be tuned from 50% to 10%. The evolution of $A$ with $V_{QPC}$ extracted from the measurements exhibits plateaus separated by regions for which $A$ varies continuously with $V_{QPC}$. The presence of plateaus suggests that for some ranges of $V_{QPC}$ the QPC might be pinching off almost completely from the QH-SC interface some of the edge modes. Our work shows a new experimental setup to control and advance the understanding of the complex interplay between superconductivity and QH effect in two-dimensional electron gas systems.
format Preprint
id arxiv_https___arxiv_org_abs_2309_01856
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Andreev reflection of quantum Hall states through a quantum point contact
Hatefipour, Mehdi
Cuozzo, Joseph J.
Levy, Ido
Strickland, William M.
Langone, Dylan
Rossi, Enrico
Shabani, Javad
Mesoscale and Nanoscale Physics
Superconductivity
We investigate the interplay between the quantum Hall (QH) effect and superconductivity in InAs surface quantum well (SQW)/NbTiN heterostructures using a quantum point contact (QPC). We use QPC to control the proximity of the edge states to the superconductor. By measuring the upstream and downstream resistances of the device, we investigate the efficiency of Andreev conversion at the InAs/NbTiN interface. Our experimental data is analyzed using the Landauer-Buttiker formalism, generalized to allow for Andreev reflection processes. We show that by varying the voltage of the QPC, $V_{QPC}$, the average Andreev reflection, $A$, at the QH-SC interface can be tuned from 50% to 10%. The evolution of $A$ with $V_{QPC}$ extracted from the measurements exhibits plateaus separated by regions for which $A$ varies continuously with $V_{QPC}$. The presence of plateaus suggests that for some ranges of $V_{QPC}$ the QPC might be pinching off almost completely from the QH-SC interface some of the edge modes. Our work shows a new experimental setup to control and advance the understanding of the complex interplay between superconductivity and QH effect in two-dimensional electron gas systems.
title Andreev reflection of quantum Hall states through a quantum point contact
topic Mesoscale and Nanoscale Physics
Superconductivity
url https://arxiv.org/abs/2309.01856