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Higgs-mode radiance and charge-density-wave order in 2 H -NbSe 2

Academic Article
Publication Date:
2018
abstract:
Despite being usually considered two competing phenomena, charge-density wave and superconductivity coexist in few systems, the most emblematic one being the transition-metal dichalcogenide 2H-NbSe2.This unusual condition is responsible for specific Raman signatures across the two phase transitions in this compound. While the appearance of a soft phonon mode is a well-established fingerprint of the charge-density-wave order, the nature of the sharp subgap mode emerging below the superconducting temperature is still under debate. In this work we use external pressure as a knob to unveil the delicate interplay between the two orders, and consequently the nature of the superconducting mode. Thanks to an advanced extreme-conditions Raman technique, we are able to follow the pressure evolution and the simultaneous collapse of the two intertwined charge-density-wave and superconducting modes. The comparison with microscopic calculations in a model system supports the Higgs-type nature of the superconducting mode and suggests that charge-density wave and superconductivity in 2H-NbSe2 involve mutual electronic degrees of freedom. These findings fill the knowledge gap on the electronic mechanisms at play in transition-metal dichalcogenides, a crucial step to fully exploit their properties in few-layer systems optimized for device applications
Iris type:
01.01 Articolo in rivista
Keywords:
Higgs-mode radiance; Dichalcogenides; Higgs bosons; Superconductors
List of contributors:
Cea, Tommaso; Benfatto, Lara
Handle:
https://iris.cnr.it/handle/20.500.14243/372205
Published in:
PHYSICAL REVIEW. B
Journal
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