Differences in the effects of turns and constrictions on the resistive response in current-biased superconducting wire after single photon absorption
arXiv:1305.3110 · doi:10.1088/0953-2048/26/7/075008
Abstract
We study how turns and constrictions affect the resistive response of the superconducting wire after instant in time and local in space heating, which models the absorption of the single photon by the wire. We find that the presence of constriction favors detection of photons of various energies but the presence of turn increases only ability to detect relatively "low" energy photons. The main reason is that in case of constriction the current density is increased over whole length and width of the constriction while in case of the turn the current density is enhanced only near the inner corner of the turn. It results in inhomogeneous Joule heating near the turn and worsens the conditions for appearance of the normal domain at relatively small currents when the "high" energy photons already could create normal domain in straight part of the wire. We also find that the amplitude of the voltage pulse depends on the place where the photon is absorbed. It is the smallest one when photon is absorbed near the turn and it is the largest one when photon is absorbed near the constriction. This effect comes from the difference in resistance of constriction and the turn in the normal state from the resistance of the rest of the wire.
References in corpus (8)
- Superconducting nanowire single-photon detectors: physics and applications
- Geometry-dependent critical currents in superconducting nanocircuits
- Vortex-assisted photon counts and their magnetic field dependence in single-photon detectors
- Photon detection by current-carrying superconducting film: A time-dependent Ginzburg-Landau approach
- Critical-Current Reduction in Thin Superconducting Wires Due to Current Crowding
- Geometry-induced reduction of the critical current in superconducting nanowires
- Saddle point states in 2D superconducting film biased near the depairing current
- Spatially-dependent sensitivity of superconducting meanders as single-photon detectors
Cited by in corpus (4)
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