We study the reset dynamics of niobium (Nb) superconducting nanowire single-photon detectors (SNSPDs) using experimental measurements and numerical simulations. The numerical simulations of the detection dynamics agree well with experimental measurements, using independently determined parameters in the simulations. We find that if the photon-induced hotspot cools too slowly, the device will latch into a dc resistive state. To avoid latching, the time for the hotspot to cool must be short compared to the inductive time constant that governs the resetting of the current in the device after hotspot formation. From simulations of the energy relaxation process, we find that the hotspot cooling time is determined primarily by the temperature-dep...
We describe a kinetic model of recombination of nonequilibrium quasiparticles generated by single ph...
We report on measurements of the switching current distributions on two-dimensional NbN superconduct...
We investigate how the bias current affects the hot-spot relaxation dynamics in niobium nitride. We ...
We study the reset dynamics of niobium (Nb) superconducting nanowire single-photon detectors (SNSPDs...
Reset dynamics and latching in niobium superconducting nanowire single-photon detector
We investigate the role of electrothermal feedback in the operation of superconducting nanowire sing...
We report on the observation of a non-uniform dark count rate in Superconducting Nanowire Single Pho...
We experimentally studied the dynamics of optically excited hotspots in current-carrying WSi superco...
Superconducting nanowire single-photon detectors (SNSPDs) show near unity efficiency, low dark count...
We investigate the timing jitter in parallel superconducting NbN-nanowire single photon detectors ba...
We measure the maximal distance at which two absorbed photons can jointly trigger a detection event ...
Niobium nitride nanowires show considerable promise as high-speed single-photon detectors. We report...
We investigated the reset time of superconducting nanowire avalanche photodetectors (SNAPs) based on...
We describe a kinetic model of recombination of nonequilibrium quasiparticles generated by single ph...
We report on measurements of the switching current distributions on two-dimensional NbN superconduct...
We investigate how the bias current affects the hot-spot relaxation dynamics in niobium nitride. We ...
We study the reset dynamics of niobium (Nb) superconducting nanowire single-photon detectors (SNSPDs...
Reset dynamics and latching in niobium superconducting nanowire single-photon detector
We investigate the role of electrothermal feedback in the operation of superconducting nanowire sing...
We report on the observation of a non-uniform dark count rate in Superconducting Nanowire Single Pho...
We experimentally studied the dynamics of optically excited hotspots in current-carrying WSi superco...
Superconducting nanowire single-photon detectors (SNSPDs) show near unity efficiency, low dark count...
We investigate the timing jitter in parallel superconducting NbN-nanowire single photon detectors ba...
We measure the maximal distance at which two absorbed photons can jointly trigger a detection event ...
Niobium nitride nanowires show considerable promise as high-speed single-photon detectors. We report...
We investigated the reset time of superconducting nanowire avalanche photodetectors (SNAPs) based on...
We describe a kinetic model of recombination of nonequilibrium quasiparticles generated by single ph...
We report on measurements of the switching current distributions on two-dimensional NbN superconduct...
We investigate how the bias current affects the hot-spot relaxation dynamics in niobium nitride. We ...