Cryogenic Microcalorimeter System for Ultra-High Resolution Alpha-Particle Spectrometry

Microcalorimeters have been shown to yield unsurpassed energy resolution for alpha spectrometry, up to 1.06 keV FWHM at 5.3 MeV. These detectors use a superconducting transition-edge sensor (TES) to measure the temperature change in an absorber from energy deposited by an interacting alpha particle....

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Hauptverfasser: Croce, M P, Bacrania, M K, Hoover, A S, Rabin, M W, Hoteling, N J, Lamont, S P, Plionis, A A, Dry, D E, Ullom, J N, Bennett, D A, Horansky, R D, Kotsubo, V, Cantor, R
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:Microcalorimeters have been shown to yield unsurpassed energy resolution for alpha spectrometry, up to 1.06 keV FWHM at 5.3 MeV. These detectors use a superconducting transition-edge sensor (TES) to measure the temperature change in an absorber from energy deposited by an interacting alpha particle. Our system has four independent detectors mounted inside a liquid nitrogen/liquid helium cryostat. An adiabatic demagnetization refrigerator (ADR) cools the detector stage to its operating temperature of 80 mK. Temperature regulation with 615-kK peak-to-peak variation is achieved by PID control of the ADR. The detectors are voltage-biased, and the current signal is amplified by a commercial SQUID readout system and digitized for further analysis. This paper will discuss design and operation of our microcalorimeter alpha-particle spectrometer, and will show recent results.
ISSN:0094-243X
DOI:10.1063/1.3292448