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Autori principali: Song, Roy G. Cohen, Nikolaevsky, Mark, Cohen, Amitay, Salem, Ran, Sengupta, Shamashis, Marrache-Kikuchi, Claire A., Frydman, Aviad
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2504.04460
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author Song, Roy G. Cohen
Nikolaevsky, Mark
Cohen, Amitay
Salem, Ran
Sengupta, Shamashis
Marrache-Kikuchi, Claire A.
Frydman, Aviad
author_facet Song, Roy G. Cohen
Nikolaevsky, Mark
Cohen, Amitay
Salem, Ran
Sengupta, Shamashis
Marrache-Kikuchi, Claire A.
Frydman, Aviad
contents The Superconductor-to-Insulator Transition (SIT) in two-dimensional superconductors occurs due to a competition between superconductivity, quantum interferences, Coulomb interactions and disorder. Despite extensive theoretical and experimental investigation, the SIT remains an active research area due to the potential for exotic phases near the transition. One such phase is the Anomalous Metal, which has been claimed to exist between the insulating and superconducting states. This elusive phase, which is not consistent with current theories, is under heavy deliberations nowadays. We present an experimental study of the effect of high pressure on thin films of amorphous indium oxide. Our results show that pressure induces a series of transitions from a Bose insulator through a superconducting phase, metallic phases and finally to a conventional insulator. We suggest that our findings reaffirm the existence of a two-dimensional metal close to the SIT and show that its occurrence requires relatively strong coupling between regions that are weakly superconducting.
format Preprint
id arxiv_https___arxiv_org_abs_2504_04460
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Pressure Induced Anomalous Metal in the Vicinity of the Superconductor Insulator Transition
Song, Roy G. Cohen
Nikolaevsky, Mark
Cohen, Amitay
Salem, Ran
Sengupta, Shamashis
Marrache-Kikuchi, Claire A.
Frydman, Aviad
Superconductivity
The Superconductor-to-Insulator Transition (SIT) in two-dimensional superconductors occurs due to a competition between superconductivity, quantum interferences, Coulomb interactions and disorder. Despite extensive theoretical and experimental investigation, the SIT remains an active research area due to the potential for exotic phases near the transition. One such phase is the Anomalous Metal, which has been claimed to exist between the insulating and superconducting states. This elusive phase, which is not consistent with current theories, is under heavy deliberations nowadays. We present an experimental study of the effect of high pressure on thin films of amorphous indium oxide. Our results show that pressure induces a series of transitions from a Bose insulator through a superconducting phase, metallic phases and finally to a conventional insulator. We suggest that our findings reaffirm the existence of a two-dimensional metal close to the SIT and show that its occurrence requires relatively strong coupling between regions that are weakly superconducting.
title Pressure Induced Anomalous Metal in the Vicinity of the Superconductor Insulator Transition
topic Superconductivity
url https://arxiv.org/abs/2504.04460