English

Optimal parametric control of transport across a Josephson junction

Superconductivity 2024-03-12 v1

Abstract

We present optimal control strategies for the DC transport across a Josephson junction. Specifically, we consider a junction in which the Josephson coupling is driven parametrically, with either a bichromatic or a trichromatic driving protocol, and optimize the prefactor of the 1/ω\omega divergence of the imaginary part of the conductivity. We demonstrate that for an optimal bichromatic protocol an enhancement of 70 can be reached, and for an optimal trichromatic protocol an enhancement of 135. This is motivated by pump-probe experiments that have demonstrated light-enhanced superconductivity along the c-axis of underdoped YBCO, where the junction serves as a minimal model for the c-axis coupling of superconducting layers. Therefore, the significant enhancement of superconductivity that we show for multi-frequency protocols demonstrates that the advancement of pump-probe technology towards these strategies is highly desirable.

Keywords

Cite

@article{arxiv.2403.06229,
  title  = {Optimal parametric control of transport across a Josephson junction},
  author = {Hannah Kleine-Pollmann and Guido Homann and Ludwig Mathey},
  journal= {arXiv preprint arXiv:2403.06229},
  year   = {2024}
}