QUBIC VI: cryogenic half wave plate rotator, design and performances
arXiv:2008.10667 · doi:10.1088/1475-7516/2022/04/039
Abstract
Inflation Gravity Waves B-Modes polarization detection is the ultimate goal of modern large angular scale cosmic microwave background (CMB) experiments around the world. A big effort is undergoing with the deployment of many ground-based, balloon-borne and satellite experiments using different methods to separate this faint polarized component from the incoming radiation. One of the largely used technique is the Stokes Polarimetry that uses a rotating half-wave plate (HWP) and a linear polarizer to separate and modulate the polarization components with low residual cross-polarization. This paper describes the QUBIC Stokes Polarimeter highlighting its design features and its performances. A common systematic with these devices is the generation of large spurious signals synchronous with the rotation and proportional to the emissivity of the optical elements. A key feature of the QUBIC Stokes Polarimeter is to operate at cryogenic temperature in order to minimize this unwanted component. Moving efficiently this large optical element at low temperature constitutes a big engineering challenge in order to reduce friction power dissipation. Big attention has been given during the designing phase to minimize the differential thermal contractions between parts. The rotation is driven by a stepper motor placed outside the cryostat to avoid thermal load dissipation at cryogenic temperature. The tests and the results presented in this work show that the QUBIC polarimeter can easily achieve a precision below 0.1° in positioning simply using the stepper motor precision and the optical absolute encoder. The rotation induces only few mK of extra power load on the second cryogenic stage (~ 8 K).
Part of a series of 8 papers on QUBIC to be submitted to a special issue of JCAP
References in corpus (20)
- BICEP / Keck XIII: Improved Constraints on Primordial Gravitational Waves using Planck, WMAP, and BICEP/Keck Observations through the 2018 Observing Season
- CMBPol Mission Concept Study: Probing Inflation with CMB Polarization
- CMB Polarization Systematics, Cosmological Birefringence and the Gravitational Waves Background
- Thermal Conductivity of Thermally-Isolating Polymeric and Composite Structural Support Materials Between 0.3 and 4 K
- QUBIC I: Overview and ScienceProgram
- SPIDER: A Balloon-borne Large-scale CMB Polarimeter
- Spider Optimization: Probing the Systematics of a Large Scale B-Mode Experiment
- Polarimetry at millimeter wavelengths with the NIKA camera: calibration and performance
- A Large-Diameter Hollow-Shaft Cryogenic Motor Based on a Superconducting Magnetic Bearing for Millimeter-Wave Polarimetry
- A cryogenic continuously rotating half-wave plate for the POLARBEAR-2b cosmic microwave background receiver
- QUBIC IV: Performance of TES Bolometers and Readout Electronics
- Progress report on the Large Scale Polarization Explorer
- QUBIC VIII: Optical design and performance
- QUBIC V: Cryogenic system design and performance
- QUBIC II: Spectro-Polarimetry with Bolometric Interferometry
- The short wavelength instrument for the polarization explorer balloon-borne experiment: Polarization modulation issues
- QUBIC III: Laboratory Characterization
- Systematic effects induced by Half Wave Plate precession into Cosmic Microwave Background polarization measurements
- Observing with NIKA2Pol from the IRAM 30m telescope. Early results on the commissioning phase
- Optimal strategy for polarization modulation in the LSPE-SWIPE experiment
Cited by in corpus (8)
- QUBIC I: Overview and ScienceProgram
- QUBIC VIII: Optical design and performance
- QUBIC V: Cryogenic system design and performance
- QUBIC II: Spectro-Polarimetry with Bolometric Interferometry
- QUBIC III: Laboratory Characterization
- Modeling parity-violating spectra in Galactic dust polarization with filaments and its applications to cosmic birefringence searches
- A Polarization Modulator Unit for the Mid- and High-Frequency Telescopes of the LiteBIRD mission
- QUBIC VII: The feedhorn-switch system of the technological demonstrator