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双中微子振荡实验中反应堆 ν(e)消失的迹象。

Indication of reactor ν(e) disappearance in the Double Chooz experiment.

机构信息

Department of Physics, Tokyo Institute of Technology, Tokyo, 152-8551, Japan.

出版信息

Phys Rev Lett. 2012 Mar 30;108(13):131801. doi: 10.1103/PhysRevLett.108.131801. Epub 2012 Mar 28.

Abstract

The Double Chooz experiment presents an indication of reactor electron antineutrino disappearance consistent with neutrino oscillations. An observed-to-predicted ratio of events of 0.944±0.016(stat)±0.040(syst) was obtained in 101 days of running at the Chooz nuclear power plant in France, with two 4.25 GW(th) reactors. The results were obtained from a single 10 m(3) fiducial volume detector located 1050 m from the two reactor cores. The reactor antineutrino flux prediction used the Bugey4 flux measurement after correction for differences in core composition. The deficit can be interpreted as an indication of a nonzero value of the still unmeasured neutrino mixing parameter sin(2)2θ(13). Analyzing both the rate of the prompt positrons and their energy spectrum, we find sin(2)2θ(13)=0.086±0.041(stat)±0.030(syst), or, at 90% C.L., 0.017<sin(2)2θ(13)<0.16.

摘要

Double Chooz 实验给出了反应堆电子反中微子消失的迹象,与中微子振荡一致。在法国 Chooz 核电站运行 101 天中,使用两个 4.25 GW(th)反应堆,在距离两个反应堆堆芯 1050 米处的单个 10 m(3)基准体积探测器中获得了 0.944±0.016(stat)±0.040(syst)的观测到的与预测到的事件比。使用 Bug ey4 通量测量值对反应堆反中微子通量预测进行了修正,以校正堆芯成分的差异。这种不足可以解释为尚未测量的中微子混合参数 sin(2)2θ(13)的非零值的迹象。通过分析瞬发正电子的速率及其能谱,我们发现 sin(2)2θ(13)=0.086±0.041(stat)±0.030(syst),或者,在 90%置信水平下,0.017<sin(2)2θ(13)<0.16。

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