arXiv · 1411.3258
Proposed parametric cooling of bilayer cuprate superconductors by terahertz excitation
Abstract
We propose and analyze a scheme for parametrically cooling bilayer cuprates based on the selective driving of a $c$-axis vibrational mode. The scheme exploits the vibration as a transducer making the Josephson plasma frequencies time-dependent. We show how modulation at the difference frequency between the intra- and interbilayer plasmon substantially suppresses interbilayer phase fluctuations, responsible for switching $c$-axis transport from a superconducting to resistive state. Our calculations indicate that this may provide a viable mechanism for stabilizing non-equilibrium superconductivity even above $T_c$, provided a finite pair density survives between the bilayers out of equilibrium.
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S. J. Denny, S. R. Clark, Y. Laplace, A. Cavalleri, D. Jaksch. 2015-03-12. Proposed parametric cooling of bilayer cuprate superconductors by terahertz excitation. https://doi.org/10.1103/physrevlett.114.137001
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