Signatures of three-dimensional photo-induced superconductivity in YBa$_2$Cu$_3$O$_{6.48}$
M. Rosenberg, D. Nicoletti, M. Buzzi, A. Iudica, C. Putzke, Y. Liu, B. Keimer, and A. Cavalleri

TL;DR
This study demonstrates the emergence of three-dimensional photo-induced superconductivity in YBa$_2$Cu$_3$O$_{6.48}$ through optical excitation, revealing in-plane optical gaps and divergent conductivity indicative of transient superconducting states.
Contribution
First experimental determination of in-plane optical properties during photo-induced superconductivity in YBa$_2$Cu$_3$O$_{6.48}$, showing non-equilibrium electronic behavior.
Findings
Observation of a photo-induced in-plane optical gap of ~30 cm$^{-1}$
Detection of divergent imaginary conductivity during excitation
In- and out-of-plane electronic properties do not fully equilibrate
Abstract
Optical excitation of large-amplitude apical oxygen phonon oscillations has been shown to renormalize the electronic properties of YBaCuO, inducing a superconducting-like optical response above equilibrium . All of the evidence collected so far has been based on the changes of the THz frequency -axis response. In these measurements, the capacitive interlayer coupling was seen to transform into a superconducting-like inductive response. This assignment was strengthened by recent measurements of ultrafast magnetic field expulsion. Here, we report an experimental determination of the transient in-plane optical properties, which has so far been elusive due to the high equilibrium reflectivity and the need to evaluate minute changes in the optical response. We report the appearance of a photo-induced in-plane optical gap cm and a divergent…
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