Global room-temperature superconductivity in graphite

Fuente: arXiv
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Hauptverfasser: Kopelevich, Y. V., Torres, J. H. S., da Silva, R. Ricardo, Diamantini, M. C., Trugenbergerand, C. A., Vinokur, V. M.
Format: Preprint
Veröffentlicht: 2022
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author Kopelevich, Y. V.
Torres, J. H. S.
da Silva, R. Ricardo
Diamantini, M. C.
Trugenbergerand, C. A.
Vinokur, V. M.
author_facet Kopelevich, Y. V.
Torres, J. H. S.
da Silva, R. Ricardo
Diamantini, M. C.
Trugenbergerand, C. A.
Vinokur, V. M.
contents Room temperature superconductivity under normal conditions has been a major challenge of physics and material science since its very discovery. Here we report the global room-temperature superconductivity observed in cleaved highly oriented pyrolytic graphite carrying dense arrays of nearly parallel surface line defects. The multiterminal measurements performed at the ambient pressure in the temperature interval 4.5 K < T < 300 K and at magnetic fields 0 < B < 9 T applied perpendicular to the basal graphitic planes reveal that the superconducting critical current I_c(T,B) is governed by the normal state resistance RN(T, B) so that I_c(T,B) is proportional to 1/R_N(T, B). Magnetization M(T, B) measurements of superconducting screening and hysteresis loops together with the critical current oscillations with temperature that are characteristic for superconductor-ferromagnet-superconductor Josephson chains, provide strong support for occurrence of superconductivity at T > 300 K. We develop a theory of global superconductivity emerging in the array of linear structural defects which well describes the experimental findings and demonstrate that global superconductivity arises as a global phase coherence of superconducting granules in linear defects promoted by the stabilizing effect of underlying Bernal graphite via tunneling coupling to the three dimensional (3D) material.
format Preprint
id arxiv_https___arxiv_org_abs_2208_00854
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Global room-temperature superconductivity in graphite
Kopelevich, Y. V.
Torres, J. H. S.
da Silva, R. Ricardo
Diamantini, M. C.
Trugenbergerand, C. A.
Vinokur, V. M.
Superconductivity
Room temperature superconductivity under normal conditions has been a major challenge of physics and material science since its very discovery. Here we report the global room-temperature superconductivity observed in cleaved highly oriented pyrolytic graphite carrying dense arrays of nearly parallel surface line defects. The multiterminal measurements performed at the ambient pressure in the temperature interval 4.5 K < T < 300 K and at magnetic fields 0 < B < 9 T applied perpendicular to the basal graphitic planes reveal that the superconducting critical current I_c(T,B) is governed by the normal state resistance RN(T, B) so that I_c(T,B) is proportional to 1/R_N(T, B). Magnetization M(T, B) measurements of superconducting screening and hysteresis loops together with the critical current oscillations with temperature that are characteristic for superconductor-ferromagnet-superconductor Josephson chains, provide strong support for occurrence of superconductivity at T > 300 K. We develop a theory of global superconductivity emerging in the array of linear structural defects which well describes the experimental findings and demonstrate that global superconductivity arises as a global phase coherence of superconducting granules in linear defects promoted by the stabilizing effect of underlying Bernal graphite via tunneling coupling to the three dimensional (3D) material.
title Global room-temperature superconductivity in graphite
topic Superconductivity
url https://arxiv.org/abs/2208.00854