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Optimization of an Optical Testbed for Characterization of EXCLAIM µ-Spec Integrated Spectrometers

  • Maryam Rahmani,
  • Emily M. Barrentine,
  • Eric R. Switzer,
  • Alyssa Barlis,
  • Ari D. Brown,
  • Giuseppe Cataldo,
  • Jake A. Connors,
  • Negar Ehsan,
  • Thomas M. Essinger-Hileman,
  • Henry Grant,
  • James Hays-Wehle,
  • Wen-Ting Hsieh,
  • Vilem Mikula,
  • S. Harvey Moseley,
  • Omid Noroozian,
  • Manuel A. Quijada,
  • Jessica Patel,
  • Thomas R. Stevenson,
  • Carole Tucker,
  • Kongpop U-Yen,
  • Carolyn G. Volpert,
  • Edward J. Wollack

摘要

We describe a testbed to characterize the optical response of compact superconducting on-chip spectrometers in development for the EXperiment for Cryogenic Large-Aperture Intensity Mapping (EXCLAIM) mission. EXCLAIM is a balloon-borne far-infrared experiment to probe the CO and CII emission lines in galaxies from redshift 3.5 to the present. The spectrometer, called µ-Spec, comprises a diffraction grating on a silicon chip coupled to kinetic inductance detectors (KIDs) read out via a single microwave feedline. We use a prototype spectrometer for EXCLAIM to demonstrate our ability to characterize the spectrometer’s spectral response using a photomixer source. We utilize an on-chip reference detector to remove the spectral structure introduced by the off-chip optics and a silicon etalon to calibrate the absolute frequency.