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Reconciling scaling of the optical conductivity of cuprate superconductors with Planckian resistivity and specific heat.


ABSTRACT: Materials tuned to a quantum critical point display universal scaling properties as a function of temperature T and frequency ω. A long-standing puzzle regarding cuprate superconductors has been the observed power-law dependence of optical conductivity with an exponent smaller than one, in contrast to T-linear dependence of the resistivity and ω-linear dependence of the optical scattering rate. Here, we present and analyze resistivity and optical conductivity of La2-xSrxCuO4 with x = 0.24. We demonstrate ℏω/kBT scaling of the optical data over a wide range of frequency and temperature, T-linear resistivity, and optical effective mass proportional to [Formula: see text] corroborating previous specific heat experiments. We show that a T, ω-linear scaling Ansatz for the inelastic scattering rate leads to a unified theoretical description of the experimental data, including the power-law of the optical conductivity. This theoretical framework provides new opportunities for describing the unique properties of quantum critical matter.

SUBMITTER: Michon B 

PROVIDER: S-EPMC10220041 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Reconciling scaling of the optical conductivity of cuprate superconductors with Planckian resistivity and specific heat.

Michon Bastien B   Berthod Christophe C   Rischau Carl Willem CW   Ataei Amirreza A   Chen Lu L   Komiya Seiki S   Ono Shimpei S   Taillefer Louis L   van der Marel Dirk D   Georges Antoine A  

Nature communications 20230526 1


Materials tuned to a quantum critical point display universal scaling properties as a function of temperature T and frequency ω. A long-standing puzzle regarding cuprate superconductors has been the observed power-law dependence of optical conductivity with an exponent smaller than one, in contrast to T-linear dependence of the resistivity and ω-linear dependence of the optical scattering rate. Here, we present and analyze resistivity and optical conductivity of La<sub>2-x</sub>Sr<sub>x</sub>CuO  ...[more]

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