High magnetic field response of superconductivity dome in quantum artificial High Tc superlattices with variable geometry

Fuente: arXiv
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Hauptverfasser: Campi, Gaetano, Alimenti, Andrea, Lee, Sang-Eon, Balicas, Luis, Balakirev, Fedor F., Smith, G. Alexander, Logvenov, Gennady, Bianconi, Antonio
Format: Preprint
Veröffentlicht: 2025
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author Campi, Gaetano
Alimenti, Andrea
Lee, Sang-Eon
Balicas, Luis
Balakirev, Fedor F.
Smith, G. Alexander
Logvenov, Gennady
Bianconi, Antonio
author_facet Campi, Gaetano
Alimenti, Andrea
Lee, Sang-Eon
Balicas, Luis
Balakirev, Fedor F.
Smith, G. Alexander
Logvenov, Gennady
Bianconi, Antonio
contents It is known that cuprate artificial high Tc superlattices (AHTS) with period d, composed of quantum wells confining interface space charge in stoichiometric Mott insulator layers (S), with thickness L, at the interface with overdoped normal metallic cuprate layers (N) show a superconducting dome by tuning the geometric L over d ratio of the SNSN superlattice with the top predicted by quantum material design engineering quantum size effects. Here we report high-field magneto transport measurements up to 41 Tesla of AHTS across the entire superconducting dome. The results show the universal upward-concave behavior of the temperature dependent upper critical magnetic field in low Tc samples at rising edge and drop edge of the dome providing strong evidence consistent with two-band superconductivity for two-band superconductivity in agreement with multigap theory used for quantum design of the SNSN superlattices. The measured superconducting coherence length demonstrates that atomic-scale engineering controls not only the critical temperature but also the intrinsic pair size at Fano-Feshbach resonances physics paving the way toward next generation quantum devices and shedding light on unconventional superconductivity.
format Preprint
id arxiv_https___arxiv_org_abs_2512_11494
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle High magnetic field response of superconductivity dome in quantum artificial High Tc superlattices with variable geometry
Campi, Gaetano
Alimenti, Andrea
Lee, Sang-Eon
Balicas, Luis
Balakirev, Fedor F.
Smith, G. Alexander
Logvenov, Gennady
Bianconi, Antonio
Superconductivity
Quantum Physics
It is known that cuprate artificial high Tc superlattices (AHTS) with period d, composed of quantum wells confining interface space charge in stoichiometric Mott insulator layers (S), with thickness L, at the interface with overdoped normal metallic cuprate layers (N) show a superconducting dome by tuning the geometric L over d ratio of the SNSN superlattice with the top predicted by quantum material design engineering quantum size effects. Here we report high-field magneto transport measurements up to 41 Tesla of AHTS across the entire superconducting dome. The results show the universal upward-concave behavior of the temperature dependent upper critical magnetic field in low Tc samples at rising edge and drop edge of the dome providing strong evidence consistent with two-band superconductivity for two-band superconductivity in agreement with multigap theory used for quantum design of the SNSN superlattices. The measured superconducting coherence length demonstrates that atomic-scale engineering controls not only the critical temperature but also the intrinsic pair size at Fano-Feshbach resonances physics paving the way toward next generation quantum devices and shedding light on unconventional superconductivity.
title High magnetic field response of superconductivity dome in quantum artificial High Tc superlattices with variable geometry
topic Superconductivity
Quantum Physics
url https://arxiv.org/abs/2512.11494