Thermal bottleneck in a freely suspended superconducting island on InAs nanowire

Fuente: arXiv
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Main Authors: Shpagina, E. V., Tikhonov, E. S., Ruhstorfer, D., Koblmueller, G., Khrapai, V. S.
Format: Preprint
Published: 2026
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author Shpagina, E. V.
Tikhonov, E. S.
Ruhstorfer, D.
Koblmueller, G.
Khrapai, V. S.
author_facet Shpagina, E. V.
Tikhonov, E. S.
Ruhstorfer, D.
Koblmueller, G.
Khrapai, V. S.
contents We investigate the heat balance in superconducting islands (S-islands) formed in epitaxial Al/InAs nanowires (NWs) freely suspended above the substrate. We employ a Joule spectroscopy approach, which traces the superconductor-normal transition in the S-island mediated by heating of the neighboring InAs NW segments via transport current. The temperature of the surrounding 3He bath is varied with nearby mesoscopic heaters and controlled with the NW Johnson noise thermometry. The experiment reveals a substantial thermal relaxation bottleneck associated with the cooling via surrounding 3He, which gives rise to phonon heating in the S-island. Our results uncover the role of environmental cooling in non-equilibrium experiments in S-islands in NW devices.
format Preprint
id arxiv_https___arxiv_org_abs_2605_03139
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Thermal bottleneck in a freely suspended superconducting island on InAs nanowire
Shpagina, E. V.
Tikhonov, E. S.
Ruhstorfer, D.
Koblmueller, G.
Khrapai, V. S.
Mesoscale and Nanoscale Physics
Superconductivity
We investigate the heat balance in superconducting islands (S-islands) formed in epitaxial Al/InAs nanowires (NWs) freely suspended above the substrate. We employ a Joule spectroscopy approach, which traces the superconductor-normal transition in the S-island mediated by heating of the neighboring InAs NW segments via transport current. The temperature of the surrounding 3He bath is varied with nearby mesoscopic heaters and controlled with the NW Johnson noise thermometry. The experiment reveals a substantial thermal relaxation bottleneck associated with the cooling via surrounding 3He, which gives rise to phonon heating in the S-island. Our results uncover the role of environmental cooling in non-equilibrium experiments in S-islands in NW devices.
title Thermal bottleneck in a freely suspended superconducting island on InAs nanowire
topic Mesoscale and Nanoscale Physics
Superconductivity
url https://arxiv.org/abs/2605.03139