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Origin of the Unusual Temperature Dependence of the Upper Critical Field of Kagome Superconductor CsV3Sb5: Multiple Bands or van Hove Singularities?

Authors :
Chapai, Ramakanta
Koshelev, Alexei E.
Smylie, Matthew P.
Chung, Duck Young
Kayani, Asghar
Bhatt, Khushi
Rimal, Gaurab
Kanatzidis, Mercouri G.
Kwok, Wai-Kwong
Mitchell, John
Welp, Ulrich
Publication Year :
2024

Abstract

Van Hove singularities (vHs) located close to the Fermi level in Kagome superconductors AV3Sb5 (A = K, Rb, Cs) have profound influence on their electronic and transport characteristics. Specifically, magneto-transport and susceptibility measurements on CsV3Sb5 reveal an anomalous temperature dependence of the upper critical field H_c2 (T), characterized by a pronounced upward curvature for both in-plane and c-axis magnetic fields, with zero-temperature H_c2 values of ~6.0 T and ~1.2 T, respectively. Our theoretical analysis, using a newly developed single-band model incorporating vHs and gap anisotropy, suggests that the observed upper critical field behavior is predominantly driven by the anisotropy of the Fermi velocity originating from vHs, instead of multi-band effects or gap anisotropy. Increased electron scattering introduced by proton irradiation defects smears out the vHs, reduces anisotropy, and recovers the conventional H_c2 (T) behavior, corroborating our proposed model.<br />Comment: 31 pages, 11 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2411.16625
Document Type :
Working Paper