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首页> 外文期刊>Physics of atomic nuclei >AMoRE: Collaboration for searches for the neutrinoless double-beta decay of the isotope of ~(100)Mo with the aid of ~(40)a~(100)MoO_4 as a cryogenic scintillation detector
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AMoRE: Collaboration for searches for the neutrinoless double-beta decay of the isotope of ~(100)Mo with the aid of ~(40)a~(100)MoO_4 as a cryogenic scintillation detector

机译:AMoRE:协作,借助〜(40)a〜(100)MoO_4作为低温闪烁探测器,搜索〜(100)Mo同位素的中微子双β衰变

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摘要

The AMoRE (Advanced Mo based Rare process Experiment) Collaboration is planning to employ ~(40)Ca~(100)MoO_4 single crystals as a cryogenic Scintillation detector for studying the neutrinoless double-beta decay of the isotope ~(100)Mo. A simultaneous readout of phonon and scintillation signals is performed in order to suppress the intrinsic background. The planned sensitivity of the experiment that would employ 100 kg of ~(40)Ca~(10)0MoO_4 over five years of data accumulation would be T_(1/2) 0ν = 3 × 10~(26) yr, which corresponds to values of the effective Majorana neutrino mass in the range of 〈m_ν〉 ~ 0.02-0.06 eV.
机译:AMoRE(基于先进钼的稀有过程实验)协作计划使用〜(40)Ca〜(100)MoO_4单晶作为低温闪烁探测器,以研究同位素〜(100)Mo的中微子双β衰变。为了抑制固有背景,同时读取声子和闪烁信号。在五年的数据积累中使用100 kg〜(40)Ca〜(10)0MoO_4的实验的计划敏感性为T_(1/2)0ν= 3×10〜(26)yr,相当于有效马约拉纳中微子质量值在〜0.02-0.06 eV范围内。

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