Fano fluctuations in superconducting nanowire single-photon detectors
arXiv:1702.02813 · doi:10.1103/PhysRevB.96.054507
Abstract
Because of their universal nature, Fano fluctuations are expected to influence the response of superconducting nanowire single-photon detectors (SNSPDs). We predict that photon counting rate () as a function of bias current () in SNSPDs is described by an integral over a transverse coordinate-dependent complementary error function. The latter describes smearing of local responses due to Fano fluctuations of the amount of energy deposited into electronic system. The finite width, , of the vs arises from fluctuations in the energy partition between quasiparticles and phonons during the energy down-conversion cascade. In narrow-nanowire SNSPDs the local responses are uniform, and the effect of Fano-fluctuations on is dominant. In wide-nanowire SNSPDs with strong coordinate dependence of local responses due to vortex-antivortex unbinding and vortex entry from edges, Fano-fluctuations smear singularities imprinted by vorticity on the transition part of curve. We demonstrate good agreement between theory and experiments for a series of bath temperatures and photon energies in narrow-wire WSi SNSPDs. The time-resolved hotspot relaxation curves predicted by Fano fluctuations match the Lorentzian shapes observed in experiments over the whole range of bias currents investigated except for their tails.
12 pages, 8 figures
References in corpus (12)
- Photo-excitation Cascade and Multiple Carrier Generation in Graphene
- Vortex-induced dissipation in narrow current-biased thin-film superconducting strips
- Theory of single photon detection by 'dirty' current-carrying superconducting strip based on the kinetic equation approach
- Vortex assisted mechanism of photon counting in superconducting nanowire single photon detector revealed by external magnetic field
- 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
- Energy Flows in Graphene: Hot Carrier Dynamics and Cooling
- Hotspot Relaxation Dynamics in a Current Carrying Superconductor
- 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
- The effect of magnetic field on the intrinsic detection efficiency of superconducting single-photon detectors
Cited by in corpus (23)
- Demonstrating sub-3 ps temporal resolution in a superconducting nanowire single-photon detector
- Superconducting nanowire for single-photon detection: progress, challenges and opportunities
- Single-photon detection in the mid-infrared up to 10 micron wavelength using tungsten silicide superconducting nanowire detectors
- Intrinsic timing jitter and latency in superconducting single photon nanowire detectors
- Physical mechanisms of timing jitter in photon detection by current carrying superconducting nanowires
- Different single photon response of wide and narrow superconducting MoSi strips
- Phonon-trapping enhanced energy resolution in superconducting single photon detectors
- Determining the depairing current in superconducting nanowire single-photon detectors
- Minimal timing jitter in superconducting nanowire single photon detectors
- Non-bolometric bottleneck in electron-phonon relaxation in ultra-thin WSi film
- Self-Heating Hotspots in Superconducting Nanowires Cooled by Phonon Black-Body Radiation
- Nanowire single-photon detectors made of atomic layer-deposited niobium nitride
- Superconducting Nanowire Single-Photon Detector (SNSPD) with 3D-Printed Free-Form Microlenses
- Synchronous single-photon detection with self-resetting GHz-gated superconducting NbN nanowires
- Local thermal fluctuations in current-carrying superconducting nanowires
- Jitter Characterization of a Dual-Readout SNSPD
- Estimating the Energy Threshold of Phonon-mediated Superconducting Qubit Detectors Operated in an Energy-Relaxation Sensing Scheme
- Jitter in photon-number-resolved detection by superconducting nanowires
- Supercurrent flow in inhomogeneous superconductors
- Tungsten Germanide Superconducting Nanowire Single-Photon Detectors with Saturated Internal Detection Efficiency at Wavelengths up to 29 μm
- Origin of performance enhancement of superconducting nanowire single-photon detectors by He-ion irradiation
- Timing jitter in photon detection by straight superconducting nanowires: Effect of magnetic field and photon flux
- Ab initio modeling of nonequilibrium dynamics in superconducting detectors and qubits