Second-order optical response of superconductors induced by supercurrent injection
arXiv:2309.14077 · doi:10.1103/PhysRevB.108.224516
Abstract
We develop a theory of the nonlinear optical responses in superconducting systems in the presence of a dc supercurrent. The optical transitions between particle-hole pair bands across the superconducting gap are allowed in clean superconductors as the inversion symmetry breaking by supercurrent. Vertex correction is included in optical conductivity to maintain the gauge symmetry in the mean-field formalism, which contains the contributions from collective modes. We show two pronounced current-dependent peaks in the second-harmonic generalization at the gap edge and and one in the photocurrent effect at , all of which diverge in the clean limit. We demonstrate this in the models of a single-band superconductor with -wave and -wave pairings, and Dirac fermion systems with -wave pairing. Our theory predicts that the current-induced peak in is proportional to the square of the supercurrent density in the -wave single-band model, with the same order of magnitude as the recent experimental observation of second-harmonic generation in NbN by Nakamura et al. [Phys. Rev. Lett. 125, 097004 (2020)]. Supercurrent induced nonlinear optical spectroscopy provides a valuable toolbox to explore novel superconductors.
12 pages, 14 figures
References in corpus (8)
- Electrodynamics of Correlated Electron Materials
- Superconducting properties and Hall Effect of epitaxial NbN thin films
- Amplitude Higgs mode and admittance in superconductors with a moving condensate
- Observation of second-harmonic generation induced by pure spin currents
- Theory of plasmonic effects in nonlinear optics: the case of graphene
- Second-order nonlinear optical effects of spin currents
- Direct measurement of a pure spin current by a polarized light beam
- Optical Conductivity From Pair Density Waves
Cited by in corpus (7)
- Nonlinear optical responses in superconductors under magnetic fields: quantum geometry and topological superconductivity
- Extracting Nonlinear Dynamical Response Functions from Time Evolution
- Proposal for Superconducting Photodiode
- Vertex correction for the linear and nonlinear optical responses in superconductors: multiband effect and topological superconductivity
- Edge optical effect as a probe of chiral topological superconductors
- Ratchet Hall Effect in Fluctuating Superconductors
- Vertex corrections to nonlinear photoinduced currents in 2D superconductors