arXiv · cond-mat/0404383
Mesoscopic supercurrent transistor controlled by nonequilibrium cooling
Abstract
The distinctive quasiparticle distribution existing under nonequilibrium in a superconductor-insulator-normal metal-insulator-superconductor (SINIS) mesoscopic line is proposed as a novel tool to control the supercurrent intensity in a long Josephson weak link. We present a description of this system in the framework of the diffusive-limit quasiclassical Green-function theory and take into account the effects of inelastic scattering with arbitrary strength. Supercurrent enhancement and suppression, including a marked transition to a $π$-junction are striking features leading to a fully tunable structure. The role of the degree of nonequilibrium, temperature, and materials choice as well as features like noise, switching time, and current and power gain are also addressed.
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F. Giazotto, T. T. Heikkila, F. Taddei, Rosario Fazio, J. P. Pekola, F. Beltram. 2004-04-16. Mesoscopic supercurrent transistor controlled by nonequilibrium cooling. https://doi.org/10.1023/b%3Ajolt.0000041276.95355.e8
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