中微子对18O的诱导反应及水中18O混合物Cherenkov探测器对超新星中微子事件的影响

IF 1.7 4区 物理与天体物理 Q2 PHYSICS, NUCLEAR
Toshio Suzuki , Ken'ichiro Nakazato , Makoto Sakuda
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引用次数: 0

摘要

用壳层模型计算了18O上的中微子-核反应截面,并与16O上的进行了比较。Gamow-Teller跃迁对18O(Γe,e−)18F的重要贡献与16O的情况相反,其中自旋-偶极跃迁是主要贡献。由于18O的阈值能量(1.66MeV)低于16O(15.42MeV),18O的计算横截面显示,在天然水中,在低于20MeV的低中微子能量和0.205%的18O混合物下,18O(μe,e−)18F的计算横截面积大于16O。所得到的电子光谱,即作为发射电子能量Te的函数的横截面,也被显示为非常不同,反映了不同的阈值能量。研究了超新星中微子探测中18O和16O水中Cherenkov探测器在有中微子振荡和没有中微子振荡的情况下(μe,e−)反应的电子光谱,并与中微子电子散射的电子光谱进行了比较。已经表明,18O(0.205%混合物)的贡献在没有振荡的情况下使16O的速率提高了60%,在Te=20MeV以下振荡的情况中使速率提高了20-30%。对于中微子振荡的情况,18O和16O的事件率与中微子电子散射的事件率相当。然而,它们在低能量(Te<;20MeV)下的速率远低于中微子电子散射的速率,这对于超新星方向的指向精度很重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neutrino-induced reactions on 18O and implications of 18O mixture in water Cherenkov detectors on supernova neutrino events

Neutrino-nucleus reaction cross sections on 18O are evaluated by shell-model calculations and compared with those on 16O. Important contributions from Gamow-Teller transitions are noticed for 18O (νe, e) 18F in contrary to the case for 16O, where spin-dipole transitions are dominant contributions. Calculated cross sections for 18O (νe, e) 18F are shown to be larger than for 16O at low neutrino energies below 20 MeV in natural water with the 0.205% admixture of 18O due to the lower threshold energy (1.66 MeV) for 18O than that for 16O (15.42 MeV). The resulting electron spectra, that is, the cross sections as functions of emitted electron energy Te, are also shown to be quite different, reflecting the different threshold energies. The electron spectra from (νe, e) reactions on 18O and 16O in water Cherenkov detectors for supernova neutrino detection are investigated for both the cases with and without the neutrino oscillation and compared with those of the neutrino-electron scattering. It has been shown that the contribution from 18O (0.205% mixture) enhances the rates from 16O by 60% for the case without the oscillation and by 20-30% for the case with the oscillation below Te =20 MeV. For the case with the neutrino oscillation, the event rates for 18O and 16O become comparable to those of the neutrino-electron scattering. However, their rates at low energy (Te< 20 MeV) are much lower than those of the neutrino-electron scattering, which is important for the pointing accuracy to the supernova direction.

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来源期刊
Nuclear Physics A
Nuclear Physics A 物理-物理:核物理
CiteScore
3.60
自引率
7.10%
发文量
113
审稿时长
61 days
期刊介绍: Nuclear Physics A focuses on the domain of nuclear and hadronic physics and includes the following subsections: Nuclear Structure and Dynamics; Intermediate and High Energy Heavy Ion Physics; Hadronic Physics; Electromagnetic and Weak Interactions; Nuclear Astrophysics. The emphasis is on original research papers. A number of carefully selected and reviewed conference proceedings are published as an integral part of the journal.
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