• DocumentCode
    1544282
  • Title

    Single-photon-counting hotspot detector with integrated RSFQ readout electronics

  • Author

    Gupta, D. ; Kadin, A.M.

  • Author_Institution
    HYRES, Elmsford, NY, USA
  • Volume
    9
  • Issue
    2
  • fYear
    1999
  • fDate
    6/1/1999 12:00:00 AM
  • Firstpage
    4487
  • Lastpage
    4490
  • Abstract
    Absorption of an infrared photon in an ultrathin film (such as 10-nm NbN) creates a localized nonequilibrium hotspot on the submicron length scale and sub-ns time scale. If a strip /spl sim/1 /spl mu/m wide is biased in the middle of the superconducting transition, this hotspot will lead to a resistance pulse with amplitude proportional to the energy of the incident photon. This resistance pulse, in turn, can be converted to a current pulse and inductively coupled to a SQUID amplifier with a digitized output, operating at 4 K or above. A preliminary design analysis indicates that this data can be processed on-chip, using ultrafast RSFQ digital circuits, to obtain a sensitive infrared detector for wavelengths up to 10 /spl mu/m and beyond, with bandwidth of 1 GHz, that counts individual photons and measures their energy with 25 meV resolution. This proposed device combines the speed of a hot-electron bolometer with the single-photon-counting ability of a transition-edge microcalorimeter, to obtain an infrared detector with sensitivity, speed, and spectral selectivity that are unmatched by any alternative technology.
  • Keywords
    digital readout; infrared detectors; niobium compounds; photon counting; superconducting integrated circuits; superconducting thin films; 1 GHz; 10 micron; 4 K; NbN; NbN ultrathin film; RSFQ ultrafast digital circuit; SQUID amplifier; infrared detector; nonequilibrium hotspot; readout electronics; resistance pulse; single photon counting; superconducting transition; Bandwidth; Coupling circuits; Digital circuits; Electromagnetic wave absorption; Infrared detectors; Pulse amplifiers; SQUIDs; Strips; Superconducting films; Superconducting photodetectors;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/77.784022
  • Filename
    784022