Fluctuation effects in superconducting nanostrips
arXiv:cond-mat/0411033 · doi:10.1016/j.physc.2006.05.079
Abstract
Superconducting fluctuations in long and narrow strips made from ultrathin NbN films, have been investigated. For large bias currents close to the critical current fluctuations led to localized, temporary transitions into the normal conducting state, which were detected as voltage transients developing between the strip ends. We present models based on fluctuations in the Cooper pair density and current-assisted thermal-unbinding of vortex-antivortex pairs, which explain the current and temperature dependence of the experimental fluctuation rates.
13 pages, 4 figures, submitted to Physica C made several changes to the manuscript
References in corpus (3)
Cited by in corpus (15)
- Geometry-dependent critical currents in superconducting nanocircuits
- Superconducting nanowire for single-photon detection: progress, challenges and opportunities
- Vortex-induced dissipation in narrow current-biased thin-film superconducting strips
- Current Assisted, Thermally Activated Flux Liberation in Ultrathin Nanopatterned NbN Superconducting Meander Structures
- Origin of intrinsic dark count in superconducting nanowire single-photon detectors
- Single photonics at telecom wavelengths using nanowire superconducting detectors
- Characterization of thin-film NbN superconductor for single-photon detection by transport measurements
- Temperature Dependent Performances of Superconducting Nanowire Single-Photon Detectors in an Ultralow-Temperature Region
- Impedance model for the polarization-dependent optical absorption of superconducting single-photon detectors
- One-dimensional resistive states in quasi-two-dimensional superconductors
- Spatially-dependent sensitivity of superconducting meanders as single-photon detectors
- Characterization of superconducting nanowire single-photon detector with artificial constrictions
- Quasi-1-Dimensional Superconductivity in Highly Disordered NbN Nanowires
- Multifunctional Superconducting Nanowire Quantum Sensors
- High-resolution spatial mapping of a superconducting NbN wire using single-electron detection