Poster + Paper
16 August 2024 Design and characterization of a 60-cm reflective half-wave plate for the CLASS 90 GHz band telescope
Rui Shi, Michael K. Brewer, Carol Yan Yan Chan, David T. Chuss, Jullianna Denes Couto, Joseph R. Eimer, John Karakla, Koji Shukawa, Deniz A. N. Valle, John W. Appel, Charles L. Bennett, Sumit Dahal, Thomas Essinger-Hileman, Tobias A. Marriage, Matthew A. Petroff, Karwan Rostem, Edward J. Wollack
Author Affiliations +
Conference Poster
Abstract
Front-end polarization modulation enables improved polarization measurement stability by modulating the targeted signal above the low-frequency 1/f drifts associated with atmospheric and instrumental instabilities and diminishes the impact of instrumental polarization. In this work, we present the design and characterization of a new 60-cm diameter Reflective Half-Wave Plate (RHWP) polarization modulator for the 90 GHz band telescope of the Cosmology Large Angular Scale Surveyor (CLASS) project. The RHWP consists of an array of parallel wires (diameter 50 μm, 175 μm pitch) positioned 0.88 mm from an aluminum mirror. In lab tests, it was confirmed that the wire resonance frequency (fres) profile is consistent with the target, 139 Hz< fres < 154 Hz in the optically active region (diameter smaller than 150 mm), preventing the wire vibration during operation and reducing the RHWP deformation under the wire tension. The mirror tilt relative to the rotating axis was controlled to be < 15′′, corresponding to an increase in beam width due to beam smearing of < 0.6′′, negligible compared to the beam’s full-width half-maximum of 36′. The median and 16/84th percentile of the wire–mirror separation residual was 0.048+0.013 −0.014 mm in the optically active region, achieving a modulation efficiency ϵ = 96.2−0.4 +0.5% with an estimated bandpass of 34 GHz. The angular velocity of the RHWP was maintained to an accuracy of within 0.005% at the nominal rotation frequency (2.5 Hz). The RHWP has been successfully integrated into the CLASS 90 GHz telescope and started taking data in June 2024, replacing the previous modulator that has been in operation since June 2018.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Rui Shi, Michael K. Brewer, Carol Yan Yan Chan, David T. Chuss, Jullianna Denes Couto, Joseph R. Eimer, John Karakla, Koji Shukawa, Deniz A. N. Valle, John W. Appel, Charles L. Bennett, Sumit Dahal, Thomas Essinger-Hileman, Tobias A. Marriage, Matthew A. Petroff, Karwan Rostem, and Edward J. Wollack "Design and characterization of a 60-cm reflective half-wave plate for the CLASS 90 GHz band telescope", Proc. SPIE 13102, Millimeter, Submillimeter, and Far-Infrared Detectors and Instrumentation for Astronomy XII, 131021T (16 August 2024); https://doi.org/10.1117/12.3016346
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KEYWORDS
Sensors

Mirrors

Telescopes

Polarization

Design

Modulation

Reflection

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