1. Dual-Mode Calorimetric Superconducting Nanowire Single Photon Detectors
- Author
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Wu, Hsin-Yeh, Besançon, Marc, Chen, Jia-Wern, Chen, Pisin, Glicenstein, Jean-François, Liu, Shu-Xiao, Lu, Yu-Jung, Navick, Xavier-François, Paganis, Stathes, Tuchming, Boris, Tsionou, Dimitra, and Tsai, Feng-Yang
- Subjects
Physics - Instrumentation and Detectors ,Astrophysics - Instrumentation and Methods for Astrophysics ,High Energy Physics - Experiment ,Quantum Physics - Abstract
A dual-operation mode SNSPD is demonstrated. In the conventional Geiger SNSPD mode the sensor operates at temperatures well below the critical temperature, Tc, working as an event counter without sensitivity to the number of photons impinging the sensor. In the calorimetric mode, the detector is operated at temperatures just below Tc and displays photon-number sensitivity for wavelengths in the optical spectrum. In this energy sensitive mode, photon absorption causes Joule heating of the SNSPD that becomes partially resistive without the presence of latching. Depending on the application, by tuning the sample temperature and bias current using the same readout system, the SNSPD can readily switch between the two modes. In the calorimetric mode, SNSPD recovery times shorter than the ones in the Geiger mode are observed, reaching values as low as 580ps. Dual-mode SNSPD's may provide significant advancements in spectroscopy and calorimetry, where precise timing, photon counting and energy resolution are required., Comment: Manuscript prepared for APL
- Published
- 2024