Photon-counting with single stoichiometric TiN layer-based optical MKIDs

Author:

Boussaha Faouzi1ORCID,Hu Jie12ORCID,Nicaise Paul1ORCID,Martin Jean-Marc1ORCID,Chaumont Christine1ORCID,Dung Pham Viet2ORCID,Firminy Josiane1,Reix Florent1,Bonifacio Piercarlo1ORCID,Piat Michel2ORCID,Geoffray Hervé3

Affiliation:

1. GEPI Observatoire de Paris, Université PSL, CNRS 1 , 75014 Paris, France

2. Université de Paris Cité, CNRS 2 , Astroparticule et Cosmologie, F-75013 Paris, France

3. French Space Agency CNES 3 , 31400 Toulouse, France

Abstract

We demonstrate the single photon counting mode at 405 and 850 nm with stoichiometric TiN-based microwave kinetic inductance detectors realized on a sapphire substrate and operated at bath temperatures over 300 mK. The detectors use single 15–25 nm-thick TiN layers featuring a critical temperature in the 2–3 K range. We found that the energy-resolving power R=E/ΔE exhibits an optimum with bath temperature, occurring in the 300–450 mK range, which can be almost double compared to those obtained at the lowest temperatures. Furthermore, the single photon regime is observed up to 700 mK. In addition to a high-temperature operation, the single stoichiometric layer would allow achieving a better uniformity in the critical temperature and, thus, kinetic inductance, compared to the often desired ∼1 K sub-stoichiometric TiN.

Funder

Centre National d'Etudes Spatiales

European Research Council

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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