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A kilo-pixel imaging system for future space based far-infrared observatories using microwave kinetic inductance detectors

  • J. J. A. Baselmans
  • , J. Bueno
  • , S. J. C. Yates
  • , O. Yurduseven
  • , N. Llombart
  • , K. Karatsu
  • , A. M. Baryshev
  • , L. Ferrari
  • , A. Endo
  • , D. J. Thoen
  • , P. J. de Visser
  • , R. M. J. Janssen
  • , V. Murugesan
  • , E. F. C. Driessen
  • , G. Coiffard
  • , J. Martin-Pintado
  • , P. Hargrave
  • , M. Griffin

Research output: Contribution to journalArticleAcademicpeer-review

108 Citations (Scopus)
391 Downloads (Pure)

Abstract

Aims: Future astrophysics and cosmic microwave background space missions operating in the far-infrared to millimetre part of the spectrum will require very large arrays of ultra-sensitive detectors in combination with high multiplexing factors and efficient low-noise and low-power readout systems. We have developed a demonstrator system suitable for such applications. Methods: The system combines a 961 pixel imaging array based upon Microwave Kinetic Inductance Detectors (MKIDs) with a readout system capable of reading out all pixels simultaneously with only one readout cable pair and a single cryogenic amplifier. We evaluate, in a representative environment, the system performance in terms of sensitivity, dynamic range, optical efficiency, cosmic ray rejection, pixel-pixel crosstalk and overall yield at an observation centre frequency of 850 GHz and 20% fractional bandwidth. Results: The overall system has an excellent sensitivity, with an average detector sensitivity <NEPdet> =3×10-19 WHz measured using a thermal calibration source. At a loading power per pixel of 50 fW we demonstrate white, photon noise limited detector noise down to 300 mHz. The dynamic range would allow the detection of 1 Jy bright sources within the field of view without tuning the readout of the detectors. The expected dead time due to cosmic ray interactions, when operated in an L2 or a similar far-Earth orbit, is found to be
Original languageEnglish
Article numberA89
Number of pages16
JournalAstronomy & Astrophysics
Volume601
DOIs
Publication statusPublished - May-2017

Keywords

  • instrumentation: detectors
  • techniques: miscellaneous
  • ARRAYS
  • CROSSTALK
  • TELESCOPE
  • NOISE

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