Simulation of vortex motion in underdamped two-dimensional arrays of Josephson junctions
P. A. Bobbert
DOI 10.1103/PhysRevB.45.7540 · Physical Review B
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Abstract
We report numerical simulations of classical vortex motion in two-dimensional arrays of underdamped Josephson junctions. A very efficient algorithm was developed, using a piecewise linear approximation for the Josephson current. We find no indication for ballistic motion, in square arrays nor in triangular arrays. Instead, in the limit of very low damping, there appears to be an effective viscosity due to excitation of the lattice behind the moving vortex.
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