Open Access
Open access
Nature Communications, volume 14, issue 1, publication number 1945

Testing electron–phonon coupling for the superconductivity in kagome metal CsV3Sb5

Yigui Zhong 1
Shaozhi Li 2
Hongxiong Liu 3
Yuyang Dong 1
Kohei Aido 1
Yosuke Arai 1
Haoxiang Li 2, 4
Weilu Zhang 1, 5
Youguo Shi 3
Ziqiang Wang 6
S O Shin 1, 7
Ho Suk Lee 2
Hu Miao 2
Takeshi Kondo 1, 8
Kozo Okazaki 1, 8, 9
Show full list: 15 authors
Publication typeJournal Article
Publication date2023-04-07
scimago Q1
SJR4.887
CiteScore24.9
Impact factor14.7
ISSN20411723
General Chemistry
General Biochemistry, Genetics and Molecular Biology
Multidisciplinary
General Physics and Astronomy
Abstract

In crystalline materials, electron-phonon coupling (EPC) is a ubiquitous many-body interaction that drives conventional Bardeen-Cooper-Schrieffer superconductivity. Recently, in a new kagome metal CsV3Sb5, superconductivity that possibly intertwines with time-reversal and spatial symmetry-breaking orders is observed. Density functional theory calculations predicted weak EPC strength, λ, supporting an unconventional pairing mechanism in CsV3Sb5. However, experimental determination of λ is still missing, hindering a microscopic understanding of the intertwined ground state of CsV3Sb5. Here, using 7-eV laser-based angle-resolved photoemission spectroscopy and Eliashberg function analysis, we determine an intermediate λ=0.45–0.6 at T = 6 K for both Sb 5p and V 3d electronic bands, which can support a conventional superconducting transition temperature on the same magnitude of experimental value in CsV3Sb5. Remarkably, the EPC on the V 3d-band enhances to λ~0.75 as the superconducting transition temperature elevated to 4.4 K in Cs(V0.93Nb0.07)3Sb5. Our results provide an important clue to understand the pairing mechanism in the kagome superconductor CsV3Sb5.

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