English

Detector fabrication development for the LiteBIRD satellite mission

Instrumentation and Methods for Astrophysics 2021-01-15 v1 Cosmology and Nongalactic Astrophysics Instrumentation and Detectors

Abstract

LiteBIRD is a JAXA-led strategic Large-Class satellite mission designed to measure the polarization of the cosmic microwave background and cosmic foregrounds from 34 to 448 GHz across the entire sky from L2 in the late 2020's. The primary focus of the mission is to measure primordially generated B-mode polarization at large angular scales. Beyond its primary scientific objective LiteBIRD will generate a data-set capable of probing a number of scientific inquiries including the sum of neutrino masses. The primary responsibility of United States will be to fabricate the three flight model focal plane units for the mission. The design and fabrication of these focal plane units is driven by heritage from ground based experiments and will include both lenslet-coupled sinuous antenna pixels and horn-coupled orthomode transducer pixels. The experiment will have three optical telescopes called the low frequency telescope, mid frequency telescope, and high frequency telescope each of which covers a portion of the mission's frequency range. JAXA is responsible for the construction of the low frequency telescope and the European Consortium is responsible for the mid- and high- frequency telescopes. The broad frequency coverage and low optical loading conditions, made possible by the space environment, require development and adaptation of detector technology recently deployed by other cosmic microwave background experiments. This design, fabrication, and characterization will take place at UC Berkeley, NIST, Stanford, and Colorado University, Boulder. We present the current status of the US deliverables to the LiteBIRD mission.

Keywords

Cite

@article{arxiv.2101.05306,
  title  = {Detector fabrication development for the LiteBIRD satellite mission},
  author = {Benjamin Westbrook and Christopher Raum and Shawn Beckman and Adrian T. Lee and Nicole Farias and Trevor Sasse and Aritoki Suzuki and Elijah Kane and Jason E. Austermann and James A Beall and Shannon M. Duff and Johannes Hubmayr and Gene C. Hilton and Jeff Van Lanen and Michael R. Vissers and Michael R. Link and Greg Jaehnig and Nils Halverson and Tommaso Ghinga and Samantha Stever and Yuto Minami and Keith L. Thompson and Megan Russell and Kam Arnold and Joseph Siebert and Maximiliano Silva-Feaver and the LiteBIRD Joint Study Group},
  journal= {arXiv preprint arXiv:2101.05306},
  year   = {2021}
}

Comments

SPIE, Cosmology, LiteBIRD, Detectors, TES, Bolometers, Inflation, Sinuous Antenna, Horn Coupled, DfMUX

R2 v1 2026-06-23T22:08:28.678Z