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Parametric amplification of a superconducting plasma wave

  • S. Rajasekaran
  • , E. Casandruc
  • , Y. Laplace
  • , D. Nicoletti
  • , G. D. Gu
  • , S. R. Clark
  • , D. Jaksch
  • , A. Cavalleri
  • Max Planck Institute for the Structure and Dynamics of Matter
  • Center for Free Electron Lasers
  • Brookhaven National Laboratory Condensed Matter Physics and Materials Science Department
  • University of Bath, Department of Physics
  • University of Oxford
  • National University of Singapore

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Many applications in photonics require all-optical manipulation of plasma waves, which can concentrate electromagnetic energy on sub-wavelength length scales. This is difficult in metallic plasmas because of their small optical nonlinearities. Some layered superconductors support Josephson plasma waves, involving oscillatory tunnelling of the superfluid between capacitively coupled planes. Josephson plasma waves are also highly nonlinear, and exhibit striking phenomena such as cooperative emission of coherent terahertz radiation, superconductor-metal oscillations and soliton formation. Here, we show that terahertz Josephson plasma waves can be parametrically amplified through the cubic tunnelling nonlinearity in a cuprate superconductor. Parametric amplification is sensitive to the relative phase between pump and seed waves, and may be optimized to achieve squeezing of the order-parameter phase fluctuations or terahertz single-photon devices.

langue originaleAnglais
Pages (de - à)1012-1016
Nombre de pages5
journalNature Physics
Volume12
Numéro de publication11
Les DOIs
étatPublié - 1 nov. 2016
Modification externeOui

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