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Evidence of a Nonequilibrium Distribution of Quasiparticles in the Microwave Response of a Superconducting Aluminum Resonator

Authors :
De Visser, P.J. (author)
Goldie, D.J. (author)
Diener, P. (author)
Withington, S. (author)
Baselmans, J.J.A. (author)
Klapwijk, T.M. (author)
De Visser, P.J. (author)
Goldie, D.J. (author)
Diener, P. (author)
Withington, S. (author)
Baselmans, J.J.A. (author)
Klapwijk, T.M. (author)
Publication Year :
2014

Abstract

In a superconductor, absorption of photons with an energy below the superconducting gap leads to redistribution of quasiparticles over energy and thus induces a strong nonequilibrium quasiparticle energy distribution. We have measured the electrodynamic response, quality factor, and resonant frequency of a superconducting aluminium microwave resonator as a function of microwave power and temperature. Below 200 mK, both the quality factor and resonant frequency decrease with increasing microwave power, consistent with the creation of excess quasiparticles due to microwave absorption. Counterintuitively, above 200 mK, the quality factor and resonant frequency increase with increasing power. We demonstrate that the effect can only be understood by a nonthermal quasiparticle distribution.<br />QN/Quantum Nanoscience<br />Applied Sciences

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1357849862
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1103.PhysRevLett.112.047004