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Instrument Overview of Taurus: A Balloon-borne CMB and Dust Polarization Experiment

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arxiv 2407.01438 v2 pith:67IMGZBE submitted 2024-07-01 astro-ph.IM

classification astro-ph.IM
keywords measurementstaurusangularinstrumentpolarizationscalesballoon-bornecontrol
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abstract

Taurus is a balloon-borne cosmic microwave background (CMB) experiment optimized to map the E-mode polarization and Galactic foregrounds at the largest angular scales ($\ell$ $\lt$ 30) and improve measurements of the optical depth to reionization ($\tau$). This will pave the way for improved measurements of the sum of neutrino masses in combination with high-resolution CMB data while also testing the $\Lambda CDM$ model on large angular scales and providing high-frequency maps of polarized dust foregrounds to the CMB community. These measurements take advantage of the low-loading environment found in the stratosphere and are enabled by NASA's super-pressure balloon platform, which provides access to 70% of the sky with a launch from Wanaka, New Zealand. Here we describe a general overview of Taurus, with an emphasis on the instrument design. Taurus will employ more than 10,000 100 mK transition edge sensor bolometers distributed across two low-frequency (150, 220 GHz) and one high-frequency (280, 350 GHz) dichroic receivers. The liquid helium cryostat housing the detectors and optics is supported by a lightweight gondola. The payload is designed to meet the challenges in mass, power, and thermal control posed by the super-pressure platform. The instrument and scan strategy are optimized for rigorous control of instrumental systematics, enabling high-fidelity linear polarization measurements on the largest angular scales.

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Cited by 1 Pith paper

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  1. A Measurement of the Largest-Scale CMB E-mode Polarization with CLASS

    astro-ph.CO 2025-01 conditional novelty 6.0 of 10

    CLASS 90 GHz data cross-correlated with Planck give tau = 0.053 (+0.018, -0.019), the first ground-based reionization optical depth measurement, with reionization detected at 99.4% confidence.

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