Evidence of a coupled electron-phonon liquid in NbGe2

Author:

Yang Hung-YuORCID,Yao Xiaohan,Plisson Vincent,Mozaffari Shirin,Scheifers Jan P.ORCID,Savvidou Aikaterini Flessa,Choi Eun Sang,McCandless Gregory T.,Padlewski Mathieu F.,Putzke CarstenORCID,Moll Philip J. W.ORCID,Chan Julia Y.ORCID,Balicas LuisORCID,Burch Kenneth S.ORCID,Tafti FazelORCID

Abstract

AbstractWhereas electron-phonon scattering relaxes the electron’s momentum in metals, a perpetual exchange of momentum between phonons and electrons may conserve total momentum and lead to a coupled electron-phonon liquid. Such a phase of matter could be a platform for observing electron hydrodynamics. Here we present evidence of an electron-phonon liquid in the transition metal ditetrelide, NbGe2, from three different experiments. First, quantum oscillations reveal an enhanced quasiparticle mass, which is unexpected in NbGe2 with weak electron-electron correlations, hence pointing at electron-phonon interactions. Second, resistivity measurements exhibit a discrepancy between the experimental data and standard Fermi liquid calculations. Third, Raman scattering shows anomalous temperature dependences of the phonon linewidths that fit an empirical model based on phonon-electron coupling. We discuss structural factors, such as chiral symmetry, short metallic bonds, and a low-symmetry coordination environment as potential design principles for materials with coupled electron-phonon liquid.

Funder

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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