Theory of single photon detection by 'dirty' current-carrying superconducting strip based on the kinetic equation approach
arXiv:1611.06060 · doi:10.1103/PhysRevApplied.7.034014
Abstract
Using kinetic equation approach we study dynamics of electrons and phonons in current-carrying superconducting nanostrips after absorption of single photon of near-infrared or optical range. We find that the larger the ratio ( is a critical temperature of superconductor, and are specific heat capacities of electrons and phonons, respectively) the larger part of photon's energy goes to electrons, they become stronger heated and, hence, could thermalize faster during initial stage of hot spot formation. Thermalization time could be less than one picoseconds for superconductors with and small diffusion coefficient when thermalization occurs mainly due to electron-phonon and phonon-electron scattering in relatively small volume ( is a superconducting coherence length, is a thickness of the strip). At larger times due to diffusion of hot electrons effective temperature inside the hot spot decreases, the size of hot spot increases, superconducting state becomes unstable and normal domain spreads in the strip at current larger than so-called detection current. We find dependence of detection current on the photon's energy, place of its absorption in the strip, width of the strip, magnetic field and compare it with existing experiments. Our results demonstrate that materials with are bad candidates for single photon detectors due to small transfer of photon's energy to electronic system and large . We also predict that even several microns wide dirty superconducting bridge is able to detect single near-infrared or optical photon if its critical current exceeds 70 of depairing current and .
19 pages, 14 figures
References in corpus (6)
- Characteristics of superconducting tungsten silicide WxSi1-x for single photon detection
- Detection Mechanism in SNSPD: Numerical Results of a Conceptually Simple, Yet Powerful Detection Model
- Intrinsic detection efficiency of superconducting single photon detector in the modified hot spot model
- Optically probing the detection mechanism in a molybdenum silicide superconducting nanowire single-photon detector
- Current dependence of the 'red' boundary of superconducting single photon detectors in the modified hot spot model
- Temporary cooling of quasiparticles and delay in voltage response of superconducting bridges after abrupt switching on the supercritical current
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