We present the first published results of near-infrared single-photon detection in aluminium lumped element kinetic inductance detectors (LEKIDs). Using aluminium as a well-understood material that follows conventional superconductor theory, we discuss and validate a model that describes the energy-resolving performance of a LEKID to single-photon absorption events. We also discuss data analysis techniques used to extract single-photon detections from noisy data. We measure an energy resolution of 662meV for a 1550nm photon source which is in close agreement to our model predictions for this non-optimised device limited by generation-recombination noise.
Modelling the Performance of Single-Photon Counting Kinetic Inductance Detectors / Parrianen, J. D. A.; Papageorgiou, A.; Doyle, S.; Pascale, E.. - In: JOURNAL OF LOW TEMPERATURE PHYSICS. - ISSN 1573-7357. - 193:3-4(2018), pp. 113-119. [10.1007/s10909-018-2064-3]
Modelling the Performance of Single-Photon Counting Kinetic Inductance Detectors
Pascale E.
2018
Abstract
We present the first published results of near-infrared single-photon detection in aluminium lumped element kinetic inductance detectors (LEKIDs). Using aluminium as a well-understood material that follows conventional superconductor theory, we discuss and validate a model that describes the energy-resolving performance of a LEKID to single-photon absorption events. We also discuss data analysis techniques used to extract single-photon detections from noisy data. We measure an energy resolution of 662meV for a 1550nm photon source which is in close agreement to our model predictions for this non-optimised device limited by generation-recombination noise.File | Dimensione | Formato | |
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