Suitability of Magnetic Microbolometers based on Paramagnetic Temperature Sensors for CMB Polarization Measurements
Juan Manuel Geria, Matias Rolf Hampel, Sebastian Kempf, Juan Jose, Bonaparte, Luciano Pablo Ferreyro, Manuel El\'ias Garc\'ia Redondo, Daniel, Alejandro Almela, Juan Manuel Salum, Nahuel M\"uller, Jesus David, Bonilla-Neira, Alan Ezequiel Fuster, Manuel Platino

TL;DR
This paper proposes magnetic microbolometers based on paramagnetic sensors as a promising, low-noise, and cost-effective alternative to existing CMB polarization detectors, with potential for high sensitivity and fast response.
Contribution
It introduces a novel magnetic microbolometer design for CMB surveys, adapting metallic magnetic calorimeters for improved sensitivity and thermal performance.
Findings
MMBs can be tuned for background-limited detection.
They offer low Johnson noise and simplified calibration.
Compatible with existing TES fabrication processes.
Abstract
High resolution maps of polarization anisotropies of the Cosmic Microwave Background (CMB) are in high demand, since the discovery of primordial B-Modes in the polarization patterns would confirm the inflationary phase of the Universe that would have taken place before the last scattering of the CMB at the recombination epoch. Transition Edge Sensors (TES) and Microwave Kinetic Inductance Detectors (MKID) are the predominant detector technologies of cryogenic detector array based CMB instruments that search for primordial B-Modes. In this paper we propose another type of cryogenic detector to be used for CMB survey: A magnetic microbolometer (MMB) that is based on a paramagnetic temperature sensor. It is an adaption of state-of-the-art metallic magnetic calorimeters (MMCs) that are meanwhile a key technology for high resolution , , and X-ray spectroscopy as well…
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Taxonomy
TopicsGeomagnetism and Paleomagnetism Studies · Magnetic Field Sensors Techniques · Inertial Sensor and Navigation
