Theory of Enhanced Interlayer Tunneling in Optically Driven High-Tc Superconductors

Jun-ichi Okamoto, Andrea Cavalleri, and Ludwig Mathey
Phys. Rev. Lett. 117, 227001 – Published 22 November 2016
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Abstract

Motivated by recent pump-probe experiments indicating enhanced coherent c-axis transport in underdoped YBCO, we study Josephson junctions periodically driven by optical pulses. We propose a mechanism for this observation by demonstrating that a parametrically driven Josephson junction shows an enhanced imaginary part of the low-frequency conductivity when the driving frequency is above the plasma frequency, implying an effectively enhanced Josephson coupling. We generalize this analysis to a bilayer system of Josephson junctions modeling YBCO. Again, the Josephson coupling is enhanced when the pump frequency is blue detuned to either of the two plasma frequencies of the material. We show that the emergent driven state is a genuine, nonequilibrium superconducting state, in which equilibrium relations between the Josephson coupling, current fluctuations, and the critical current no longer hold.

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  • Received 29 June 2016

DOI:https://doi.org/10.1103/PhysRevLett.117.227001

© 2016 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

Jun-ichi Okamoto1,2,*, Andrea Cavalleri3,4, and Ludwig Mathey1,2

  • 1Zentrum für Optische Quantentechnologien and Institut für Laserphysik, Universität Hamburg, 22761 Hamburg, Germany
  • 2The Hamburg Centre for Ultrafast Imaging, Luruper Chaussee 149, 22761 Hamburg, Germany
  • 3Max Planck Institute for the Structure and Dynamics of Matter, 22761 Hamburg, Germany
  • 4Department of Physics, Clarendon Laboratory, University of Oxford, Oxford OX1 3PU, United Kingdom

  • *ojunichi@physnet.uni-hamburg.de

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Issue

Vol. 117, Iss. 22 — 25 November 2016

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