Thermal fluctuations of the Josephson current in a ring of superconducting grains
arXiv:1609.05241 · doi:10.1103/PhysRevB.95.014520
Abstract
Thermal fluctuations of the Josephson current induced by the magnetic flux through a ring of superconducting grains are studied. When a half-fluxon is threading the ring, exhibits incoherent transitions between the two degenerate states due to thermal phase slips. We propose a new numerical method to deal with both equilibrium and dynamic properties of Josephson systems. Computed transition rate has the form , where agrees with the analytical result derived for the energy barrier associated with phase slips. In the non-degenerate case (e.g., at a quarter-fluxon) the equilibrium value of decreases with due to harmonic excitations and then gets destroyed by phase slips.
6 pages, 7 figure captions