Strong-coupling effects in the kagome CDW system CsV<sub>3</sub>Sb<sub>5</sub>
ORAL
Abstract
We present a polarization-dependent Raman scattering study of the kagome metal CsV3Sb5, focusing on the charge density wave (CDW). We resolve several signatures of strong-coupling between the lattice and the electronic system. First, the energy of the A1g Γ-point phonon exhibits a discontinuity at the phase transition temperature TCDW = 95 K. Second, the magnitude of the observed CDW-energy gap 2Δ is compatible with strong coupling. The gap ratio 2Δ/kBTCDW exceeds the weak coupling limit of 3.52 by a factor of 6 in both A1g and E2g symmetry. Third, the observed A1g amplitude mode depends weaker on temperature than expected and displays an asymmetric Fano-type line shape, particularly around 70K. We interpret this deviation in terms of strong coupling between the phonon-like amplitude mode and the electronic continuum. To the best of our knowledge such an asymmetry of an amplitude mode has not been observed before.
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Presenters
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Leander Peis
Walther-Meissner-Institut, IFW Dresden; Walther-Meißner-Institut
Authors
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Leander Peis
Walther-Meissner-Institut, IFW Dresden; Walther-Meißner-Institut
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Ge He
University College Cork
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Emma F Cuddy
Stanford University
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Dong Li
Chinese Academy of Sciences,Institute of
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Brian Moritz
SLAC National Accelerator Laboratory, SLAC - Natl Accelerator Lab
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Haitao Yang
School of Physical Sciences, University of Chinese Academy of Sciences, Beijing National Laboratory for Condensed Matter Physics
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Hongjun Gao
Chinese Academy of Sciences,Institute of Physics, Institute of Physics & University of Chinese Academy of Sciences
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Thomas Devereaux
Stanford Univ, Stanford University
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Rudolf U Hackl
IFW-Dresden