Parallel graphic processing units have been employed for fast simulations of the switching dynamics of Josephson junctions subject to critical current fluctuations. Such a system is modeled by a nonequilibrium washboard model with multiplicative noise, for which analytical results are lacking. The proposed approach allows to execute extensive numerical simulation in short time and with relatively inexpensive resources. This allows to fully characterize the effect of the noise on the junction switching current distributions at realistic bias current sweep rates

Parallel simulation of Josephson Junctions with Multiplicative Noise

Vincenzo Pierro;Luigi Troiano;Elena Mejuto Villa;Giovanni Filatrella
2018-01-01

Abstract

Parallel graphic processing units have been employed for fast simulations of the switching dynamics of Josephson junctions subject to critical current fluctuations. Such a system is modeled by a nonequilibrium washboard model with multiplicative noise, for which analytical results are lacking. The proposed approach allows to execute extensive numerical simulation in short time and with relatively inexpensive resources. This allows to fully characterize the effect of the noise on the junction switching current distributions at realistic bias current sweep rates
2018
Josephson junctions
CUDA simulations
multiplicative noise
washboard potentia
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12070/34921
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