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- W4321496421 abstract "The strange metal behavior, usually characterized by a linear-in-temperature (T) resistivity, is a still unsolved mystery in solid-state physics. It is often associated with the proximity to a quantum critical point (a second order transition at temperature T=0, leading to a broken symmetry phase) focusing on the related divergent order parameter correlation length. Here, we propose a paradigmatic shift, focusing on a divergent characteristic time scale due to a divergent dissipation acting on the fluctuating critical modes while their correlation length stays finite. To achieve a divergent dissipation, we propose a mechanism based on the coupling between a local order parameter fluctuation and electron density diffusive modes that accounts both for the linear-in-T resistivity and for the logarithmic specific heat versus temperature ratio CV/T∼log(1/T), down to low temperatures." @default.
- W4321496421 created "2023-02-23" @default.
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- W4321496421 date "2023-02-21" @default.
- W4321496421 modified "2023-09-30" @default.
- W4321496421 title "Dissipative Quantum Criticality as a Source of Strange Metal Behavior" @default.
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- W4321496421 doi "https://doi.org/10.3390/sym15030569" @default.
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