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Skewed Non-Fermi Liquids and the Seebeck Effect

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arxiv 2102.13224 v2 pith:7WFZWV2D submitted 2021-02-25 cond-mat.str-el

Skewed Non-Fermi Liquids and the Seebeck Effect

classification cond-mat.str-el
keywords liquidsasymmetrynon-fermiscatteringthermopowerbehaviourconsidercontrast
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider non-Fermi liquids in which the inelastic scattering rate has an intrinsic particle-hole asymmetry and obeys $\omega/T$ scaling. We show that, in contrast to Fermi liquids, this asymmetry influences the low-temperature behaviour of the thermopower even in the presence of impurity scattering. Implications for the unconventional sign and temperature dependence of the thermopower in cuprates in the strange metal (Planckian) regime are emphasized.

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