English

Squeezed Josephson plasmons in driven YBa$_2$Cu$_3$O$_{6+x}$

Superconductivity 2025-06-13 v1

Abstract

The physics of driven collective modes in quantum materials underpin a number of striking non-equilibrium functional responses, which include enhanced magnetism, ferroelectricity and superconductivity. However, the coherent coupling between multiple modes at once are difficult to capture by single-pump probe (one-dimensional) spectroscopy, and often remain poorly understood. One example is phonon-mediated amplification of Josephson plasmons in YBa2_2Cu3_3O6+x_{6+x}, in which at least three normal modes of the solid are coherently mixed as a source of enhanced superconductivity. Here, we go beyond previous pump-probe experiments in this system and acquire two-dimensional frequency maps using pairs of mutually delayed, carrier envelope phase stable mid-infrared pump pulses, combined with measurements of the time-modulated second-order nonlinear optical susceptibility. We find that the driven zone-center phonons amplify coherent pairs of opposite-momentum Josephson plasma polaritons, generating a squeezed state of interlayer phase fluctuations. The squeezed state is a potentially important ingredient in the microscopic physics of photo-induced superconductivity in this and other materials.

Keywords

Cite

@article{arxiv.2401.01115,
  title  = {Squeezed Josephson plasmons in driven YBa$_2$Cu$_3$O$_{6+x}$},
  author = {N. Taherian and M. Först and A. Liu and M. Fechner and D. Pavicevic and A. von Hoegen and E. Rowe and Y. Liu and S. Nakata and B. Keimer and E. Demler and M. H. Michael and A. Cavalleri},
  journal= {arXiv preprint arXiv:2401.01115},
  year   = {2025}
}

Comments

20 pages, 7 figures

R2 v1 2026-06-28T14:06:43.860Z