## I-V Modeling of Josephson Junctions |

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12 I-V Characteristics adiabatic applied torque bias current biased I-V curve Boone capacitance CHARLOTTESVILLE continuous solution current biased I-V current phase relation D.C. bias delay in pair dependent current phase dependent voltage bias differential equation equa Equation 1.7 finite average voltages gap-related structure high voltage hysteresis hysteretic I-V calculations I-V Foot I-V MODELING I-V peak I-V Plots Infinite Pair Current instantaneous voltage Jensen Josephson cycle Josephson effect models Josephson junction junction current kernel low voltage Microscopic Theory pair current occurs pair density pair response pendulum phase dependent damping phenomenological plotted in Figure polynomial quasi-particle current R. E. Harris resonant values response function retarded Josephson equation RSJt Model RSJtR I-V RSJx RSJxR Schlup singularity Steady state solutions subharmonic gap structure sults superconductors supercurrent taneous Voltage temperature tion University of Virginia values of voltage voltage biasing voltage dependent current Voltage Phase Relation Werthamer Theory zero voltage