Optical conductivity of a dirty current-carrying superconductor
arXiv:2512.06943 · doi:10.1103/1fx5-f9m7
Abstract
We develop a full microscopic theory for the optical conductivity, , of a dirty current-carrying superconductor. Within the Keldysh sigma model formalism, we obtain the general analytical expression for , applicable for arbitrary frequency , temperature , and dc supercurrent . In addition to altering the usual Mattis-Bardeen conductivity, , a finite supercurrent introduces two new contributions: from quasiparticle redistribution and from the amplitude (Schmid-Higgs) mode excitation by the ac field. We investigate, both analytically and numerically, the main features of the optical conductivity in the presence of a dc supercurrent. They include a peak in above the optical gap and a sign change of , with both effects becoming more pronounced at higher and lower . We also elucidate the role of inelastic relaxation, which governs the low-frequency response, leading to a giant microwave absorption and a suppression of the apparent superfluid density at the critical current. The optical conductivity measurement of a superconductor biased by a finite dc supercurrent enables the direct observation of the Schmid-Higgs mode via transport measurements.
16 pages, 7 figures
References in corpus (12)
- The Higgs Mode in Disordered Superconductors Close to a Quantum Phase Transition
- Amplitude Higgs mode and admittance in superconductors with a moving condensate
- Nonlinear electromagnetic response and Higgs mode excitation in BCS superconductors with impurities
- Charge imbalance in superconductors in the low-temperature limit
- Revealing novel aspects of light-matter coupling in terahertz two-dimensional coherent spectroscopy: the case of the amplitude mode in superconductors
- Supercurrent induced resonant optical response
- Nonlinear Response of Diffusive Superconductors to -electromagnetic Fields
- The Higgs-Amplitude mode in the optical conductivity in the presence of a supercurrent: Gauge-invariant formulation with disorder
- Giant magnetoconductivity in non-centrosymmetric superconductors
- Surface resistance and amplitude mode under uniform and static external field in conventional superconductors
- Spatially-resolved dynamics of the amplitude Schmid-Higgs mode in disordered superconductors
- Higgs-mode-induced instability and kinetic inductance in strongly dc-biased dirty-limit superconductors