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Non-equilibrium Optical Conductivity: General Theory and Application to Transient Phases

Superconductivity 2017-08-08 v2 Statistical Mechanics Strongly Correlated Electrons

Abstract

A non-equilibrium theory of optical conductivity of dirty-limit superconductors and commensurate charge density wave is presented. We discuss the current response to different experimentally relevant light-field probe pulses and show that a single frequency definition of the optical conductivity σ(ω)j(ω)/E(ω)\sigma(\omega)\equiv j(\omega)/E(\omega) is difficult to interpret out of the adiabatic limit. We identify characteristic time domain signatures distinguishing between superconducting, normal metal and charge density wave states. We also suggest a route to directly address the instantaneous superfluid stiffness of a superconductor by shaping the probe light field.

Keywords

Cite

@article{arxiv.1703.07248,
  title  = {Non-equilibrium Optical Conductivity: General Theory and Application to Transient Phases},
  author = {Dante M. Kennes and Eli Y. Wilner and David R. Reichman and Andrew J. Millis},
  journal= {arXiv preprint arXiv:1703.07248},
  year   = {2017}
}

Comments

14 pages, 19 figures, version as published