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A search for decay of with tin-loaded liquid scintillator
Authors:M.J. Hwang   Y.J. Kwon   H.J. Kim   J.W. Kwak   S.C. Kim   S.K. Kim   T.Y. Kim   S.Y. Kim   H.S. Lee   M.J. Lee   S.S. Myung   Y.D. Kim   J.I. Lee   W.G. Kang   I.S. Hahn   M.H. Lee  KIMS Collaboration
Affiliation:1. Department of Nuclear Physics and Biophysics, Faculty of Mathematics, Physics and Computer Science, Comenius University, Bratislava, Slovakia;2. Department of Gynecological Oncology, National Cancer Institute, Bratislava, Slovakia;3. Cancer Research Institute, Slovak Academy of Sciences, Bratislava, Slovakia
Abstract:A search for the neutrinoless double-beta decay of 124Sn was carried out using the tin-loaded liquid scintillator for an active source-detector technique. Tin (32.6%) in weight was successfully loaded into the liquid scintillator, and light output was as high as 57% of the unloaded liquid scintillator. A tin-loaded liquid scintillator with 1.1  volume was installed at the 700 m underground laboratory in YangYang, and data were taken for 5285 h. No evidence for the 0νββ decay was found and a lower limit on the 124Sn half-life was obtained to be 2.0×1019 year with 90% C.L. The new limit represents a significant improvement with respect to those previously available for 124Sn.
Keywords:Tin-loaded liquid scintillator   Double-beta decay   Neutrino mass     mml20"  >  text-decoration:none   color:black"   href="  /science?_ob=MathURL&_method=retrieve&_udi=B6TJ1-4W9XDTN-1&_mathId=mml20&_user=10&_cdi=5297&_rdoc=3&_acct=C000054348&_version=1&_userid=3837164&md5=559a3ecdd99f51662fcb8384acf84e91"   title="  Click to view the MathML source"   alt="  Click to view the MathML source"  >124Sn
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