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An MMC-based cryogenic calorimeter with a massive sodium molybdate crystal absorber for neutrinoless double beta decay searches

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Title
An MMC-based cryogenic calorimeter with a massive sodium molybdate crystal absorber for neutrinoless double beta decay searches
Author(s)
Woo Tae Kim; Seung Cheon Kim; Sharma Bijaya; Grigorieva, V.D.; Jin A Jeon; Hyelim Kim; Kim, H.J.; Sang Goon Kim; So Ra Kim; Yeongduk Kim; Yong Hamb Kim; Hye Jin Lee; Moo Hyun Lee; Sung Won Lee; Shlegel, V.N.; Jee Won Seo; Jung Ho So
Publication Date
2022-04
Journal
Journal of Instrumentation, v.17, no.4
Publisher
IOP Publishing Ltd
Abstract
Sodium molybdate crystals are excellent scintillating target material that can be used to investigate the neutrinoless double beta decay of 100Mo. Because this material contains Na nuclei, it could also be used to clarify the contribution of Na in the controversial claim of dark matter observation by the DAMA/LIBRA experiment. Recent developments have allowed the growth of sodium molybdate crystals of several hundred grams, which makes it possible to build large scale experiments. Therefore, a cryogenic calorimeter with a crystal of significant mass, which can exploit the excellent energy resolution from thermal signals and particle identification using the scintillation signals, is highly desired. We have developed a cryogenic calorimeter with a cylindrical sodium molybdate crystal of 178 g with dimensions of 4 cm (height) × 4 cm (diameter) coupled to a metallic magnetic calorimeter (MMC). The detector was also equipped with a light detector with a thin Ge absorber to detect scintillation signals. The detector test measurements showed excellent energy resolution and particle discrimination using dual detection of heat and light signals, and thus demonstrate that the crystal is a promising tool for searching for rare phenomena events. Details of the detector development with the massive sodium molybdate crystal are discussed in this paper along with the performance results from test measurements.
URI
https://pr.ibs.re.kr/handle/8788114/12946
DOI
10.1088/1748-0221/17/04/P04004
ISSN
1748-0221
Appears in Collections:
Center for Underground Physics(지하실험 연구단) > 1. Journal Papers (저널논문)
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