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Development of decay energy spectroscopy using low temperature detectors

Authors :
Jong-Man Lee
H.J. Lee
W.S. Yoon
Lee Min-Kie
Yun Ho Kim
Y.S. Jang
G. B. Kim
K.J. Kim
K.B. Lee
M.S. Kim
H.C. Ri
Y.N. Yuryev
Sang Jun Lee
Source :
Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine. 70(9)
Publication Year :
2011

Abstract

We have developed a high-resolution detection technique for measuring the energy and activity of alpha decay events using low-temperature detectors. A small amount of source material containing alpha-emitting radionuclides was enclosed in a 4π metal absorber. The energy of the alpha particles as well as that of the recoiled nuclides, low-energy electrons, and low-energy x-rays and γ-rays was converted into thermal energy of the gold absorber. A metallic magnetic calorimeter serving as a fast and sensitive thermometer was thermally attached to the metal absorber. In the present report, experimental demonstrations of Q spectroscopy were made with a new meander-type magnetic calorimeter. The thermal connection between the temperature sensor and the absorber was established with annealed gold wires. Each alpha decay event in the absorber resulted in a temperature increase of the absorber and the temperature sensor. Using the spectrum measured for a drop of 226 Ra solution in a 4π gold absorber, all of the alpha emitters in the sample were identified with a demonstration of good detector linearity. The resolution of the 226 Ra spectrum showed a 3.3 keV FWHM at its Q value together with an expected gamma escape peak at the energy shifted by its γ-ray energy.

Details

ISSN :
18729800
Volume :
70
Issue :
9
Database :
OpenAIRE
Journal :
Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine
Accession number :
edsair.doi.dedup.....c149bd20aca41fd367a5078572faa36c