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Development of Metallic Magnetic Calorimeters for High Precision Measurements of Calorimetric Re-187 and Ho-163 SpectraThe measurement of calorimetric spectra following atomic weak decays, beta (b) and electron capture (EC), of nuclides having a very low Q-value, can provide an impressively high sensitivity to a non-vanishing neutrino mass. The achievable sensitivity in this kind of experiments is directly connected to the performance of the used detectors. In particular an energy resolution of a few eV and a pulse formation time well below 1 microsecond are required. Low temperature Metallic Magnetic Calorimeters (MMCs) for soft X-rays have already shown an energy resolution of 2.0 eV FWHM and a pulse rise-time of about 90 ns for fully micro-fabricated detectors. We present the use of MMCs for high precision measurements of calorimetric spectra following the beta-decay of Re-187 and the EC of Ho-163. We show results obtained with detectors optimized for Re-187 and for Ho-163 experiments respectively. While the detectors equipped with superconducting Re absorbers have not yet reached the aimed performance, a first detector prototype with a Au absorber having implanted Ho-163 ions already shows excellent results. An energy resolution of 12 eV FWHM and a rise time of 90 ns were measured.
Document ID
20120014326
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
Ranitzsch, P. C.-O.
(Heidelberg Univ. Heidelberg, Germany)
Porst, J.-P.
(Heidelberg Univ. Heidelberg, Germany)
Kempf, S.
(Heidelberg Univ. Heidelberg, Germany)
Pies, C.
(Heidelberg Univ. Heidelberg, Germany)
Schafer, S.
(Heidelberg Univ. Heidelberg, Germany)
Hengstler, D.
(Heidelberg Univ. Heidelberg, Germany)
Fleischmann, A.
(Heidelberg Univ. Heidelberg, Germany)
Enss, C.
(Heidelberg Univ. Heidelberg, Germany)
Gastaldo, L.
(Heidelberg Univ. Heidelberg, Germany)
Date Acquired
August 26, 2013
Publication Date
February 2, 2012
Publication Information
Publication: Journal of Low Temperature Physics
Volume: 167
Issue: 6-May
Subject Category
Physics Of Elementary Particles And Fields
Report/Patent Number
GSFC.JA.6888.2012
Distribution Limits
Public
Copyright
Other

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