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Detector Array Readout with Traveling Wave Amplifiers

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Title
Detector Array Readout with Traveling Wave Amplifiers
Author(s)
Giachero, A.; Barone, C.; Borghesi, M.; Carapella, G.; Caricato, A. P.; Carusotto, I.; Woo Hyun Chung; Cian, A.; Di Gioacchino, D.; Enrico, E.; Falferi, P.; Fasolo, L.; Faverzani, M.; Ferri, E.; Filatrella, G.; Gatti, C.; Giubertoni, D.; Greco, A.; Caglar Kutlu; Leo, A.; Ligi, C.; Maccarrone, G.; Margesin, B.; Maruccio, G.; Andrei Matlashov; Mauro, C.; Mezzena, R.; Monteduro, A. G.; Nucciotti, A.; Oberto, L.; Pagano, S.; Pierro, V.; Piersanti, L.; Rajteri, M.; Rizzato, S.; Yannis K. Semertzidis; Sergey Uchaikin; Vinante, A.
Publication Date
2022-11
Journal
JOURNAL OF LOW TEMPERATURE PHYSICS, v.209, no.3-4, pp.658 - 666
Publisher
SPRINGER/PLENUM PUBLISHERS
Abstract
Reducing noise to the quantum limit over a large bandwidth is a fundamental requirement for future applications operating at millikelvin temperatures, such as the neutrino mass measurement, the next-generation X-ray observatory, the CMB measurement, the dark matter and axion detection, and the rapid high-fidelity readout of superconducting qubits. The read out sensitivity of arrays of microcalorimeter detectors, resonant axion-detectors, and qubits, is currently limited by the noise temperature and bandwidth of the cryogenic amplifiers. The Detector Array Readout with Traveling Wave Amplifiers project has the goal of developing high-performing innovative traveling wave parametric amplifiers with a high gain, a high saturation power, and a quantum-limited or nearly quantum-limited noise. The practical development follows two different promising approaches, one based on the Josephson junctions and the other one based on the kinetic inductance of a high-resistivity superconductor. In this contribution, we present the aims of the project, the adopted design solutions and preliminary results from simulations and measurements.
URI
https://pr.ibs.re.kr/handle/8788114/12813
DOI
10.1007/s10909-022-02809-6
ISSN
0022-2291
Appears in Collections:
Center for Axion and Precision Physics Research(액시온 및 극한상호작용 연구단) > 1. Journal Papers (저널논문)
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