Quantum decay of the supercurrent and intrinsic capacitance of Josephson junctions beyond the tunnel limit
arXiv:1509.03290 · doi:10.1103/PhysRevB.92.214513
Abstract
A nondissipative supercurrent state of a Josephson junction is metastable with respect to the formation of a finite-resistance state. This transition is driven by fluctuations, thermal at high temperatures and quantum at low temperatures. We evaluate the life time of such a state due to quantum fluctuations in the limit when the supercurrent is approaching the critical current. The decay probability is determined by the instanton action for the superconducting phase difference across the junction. At low temperatures, dynamics of the phase is massive and is determined by the effective capacitance, which is a sum of the geometric and intrinsic capacitance of the junction. We model the central part of the Josephson junction either by an arbitrary short mesoscopic conductor described by the set of its transmission coefficients, or by a diffusive wire of an arbitrary length. The intrinsic capacitance can generally be estimated as , where is the normal-state conductance of the junction and is the proximity minigap in its normal part. The obtained capacitance is sufficiently large to qualitatively explain hysteretic behavior of the current-voltage characteristic even in the absence of overheating.
11 pages, 4 figures; minor corrections, references added
References in corpus (11)
- Bipolar supercurrent in graphene
- Macroscopic quantum tunneling in a d-wave high-Tc superconductor
- Proximity DC squids in the long junction limit
- Influence of Topological Edge States on the Properties of Al/Bi2Se3/Al Hybrid Josephson Devices
- Macroscopic quantum tunneling in spin filter ferromagnetic Josephson junctions
- Direct transition from quantum escape to phase diffusion regime in YBaCuO biepitaxial Josephson Junctions
- Dynamical Gate Tunable Supercurrents in Topological Josephson Junctions
- Nonequilibrium transport in mesoscopic multi-terminal SNS Josephson junctions
- Mesoscopic fluctuations of the supercurrent in diffusive Josephson junctions
- Admittance of a long diffusive SNS junction
- Origin of Hysteresis in a Proximity Josephson Junction
Cited by in corpus (7)
- Joule overheating poisons the fractional ac Josephson effect in topological Josephson junctions
- Superconductivity in the presence of microwaves: Full phase diagram
- Half-Integer Shapiro Steps in a Short Ballistic InAs Nanowire Josephson Junction
- Half-integer Shapiro steps in highly transmissive InSb nanoflag Josephson junctions
- Electrodynamics of Josephson junctions containing strong ferromagnets
- Microwave studies of the fractional Josephson effect in HgTe-based Josephson junctions
- Josephson Effect and Charge Distribution in Thin BiTe Topological Insulators