Skip to main navigation Skip to search Skip to main content

The Simons Observatory: Detector Polarization Angle Calibration Using a Sparse Wire Grid with Initial Datasets of the Small-aperture Telescopes

  • Hironobu Nakata
  • , Shunsuke Adachi
  • , Kyohei Yamada
  • , Michael Randall
  • , Yutaro Kasai
  • , Kam Arnold
  • , Bryce Bixler
  • , Yuji Chinone
  • , Kevin T. Crowley
  • , Nadia Dachlythra
  • , Samuel Day-Weiss
  • , Nicholas Galitzki
  • , Serena Giardiello
  • , Bradley R. Johnson
  • , Brian Keating
  • , Brian J. Koopman
  • , Akito Kusaka
  • , Jack Lashner
  • , Federico Nati
  • , Lyman Page
  • Daichi Sasaki, Yoshinori Sueno, Junya Suzuki, Osamu Tajima, Tran Tsan

Research output: Contribution to journalArticlepeer-review

Abstract

Improved measurements of B-modes in the cosmic microwave background can be obtained through accurate calibration of the orientation of detector antennas as projected onto the sky. Miscalibration of the detector polarization angle leads to a leakage of E-modes into B-modes, which can bias the detection of the latter. To achieve a σ(r) of 0.003, the Simons Observatory small-aperture telescopes are required to calibrate the global polarization angle on the sky with an accuracy ≲0. °1. We demonstrate a fully remote-controllable calibration system using a “sparse wire grid,” which injects a rotatable linear polarized signal across the telescope’s focal plane. This calibration system is installed and operational on one of the small-aperture telescopes at its observing site at the Parque Astronómico in the Atacama desert in Chile. We developed a pipeline for the detector polarization angle calibration, and demonstrate it using initial data for 93 and 145 GHz frequency bands. The observed distribution of detector polarization angles is in agreement with the instrument design. Statistical uncertainties for the relatively calibrated polarization angles are 0. °02 and 0. °03 at 93 and 145 GHz, respectively. Systematic uncertainty was evaluated to be 0. °08 at the hardware development and fabrication stage. Their sum in quadrature is less than 0. °1.

Original languageEnglish (US)
Article number78
JournalAstrophysical Journal, Supplement Series
Volume283
Issue number2
DOIs
StatePublished - Apr 1 2026

All Science Journal Classification (ASJC) codes

  • Astronomy and Astrophysics
  • Space and Planetary Science

Fingerprint

Dive into the research topics of 'The Simons Observatory: Detector Polarization Angle Calibration Using a Sparse Wire Grid with Initial Datasets of the Small-aperture Telescopes'. Together they form a unique fingerprint.

Cite this