Weighing the neutrino

Weighing the neutrino
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称量中微子

DOI:
10.1142/s0218301314500049
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发表时间:
2013
期刊:
International Journal of Modern Physics E-nuclear Physics
影响因子:
--
通讯作者:
B. Ujvari
B. Ujvari
中科院分区:
--
文献类型:
--
作者:
U. Jentschura;D. Horváth;S. Nagy;I. Nandori;Z. Trocsanyi;B. Ujvari

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为了测量(Muon)中微子的色散关系,我们研究了短基线实验的可能性,并展望了最终测量中微子质量的前景。作为一个副产品,该实验将有助于限制中微子部分违反洛伦兹效应的参数。讨论了高通量激光加速的质子束(例如,在即将到来的ELI设施中)入射到由轻元素组成的厚靶上产生介子,随后衰变为介子和介子-中微子的潜力。我们发现了以前所未有的精度测量Muon中微子质量的可能性。
We investigate the potential of short-baseline experiments in order to measure the dispersion relation of the (muon) neutrino, with a prospect of eventually measuring the neutrino mass. As a byproduct, the experiment would help to constrain parameters of Lorentz-violating effects in the neutrino sector. The potential of a high-flux laser-accelerated proton beam (e.g., at the upcoming ELI facility), incident on a thick target composed of a light element to produce pions, with a subsequent decay to muons and muon-neutrinos, is discussed. We find a possibility for a muon neutrino mass measurement of unprecedented accuracy.
DOI: 10.1103/physrevlett.106.181801
发表时间: 2011-03
影响因子: 8.6
作者:
P. Adamson;C. Andreopoulos;R. Armstrong;D. Auty;D. Ayres;C. Backhouse;G. Barr;M. Bishai;A. B
通讯作者: P. Adamson;C. Andreopoulos;R. Armstrong;D. Auty;D. Ayres;C. Backhouse;G. Barr;M. Bishai;A. B