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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Distinguishing magnetic moment from oscillation solutions of the solar neutrino problem with Borexino
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Distinguishing magnetic moment from oscillation solutions of the solar neutrino problem with Borexino

机译:用Borexino区分太阳中微子问题的振荡解中的磁矩

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Assuming that the observed deficit of solar neutrinos is due to the interaction of their transition magnetic moment with the solar magnetic field we derive the predictions for the forthcoming Borexino experiment. Three different model magnetic field profiles which give very good global fits of the currently available solar neutrino data are used, The expected signal at Borexino is significantly lower than those predicted by the LMA, LOW and VO neutrino oscillation solutions of the solar neutrino problem. It is similar to that of the SMA oscillation solution which, however, is strongly disfavoured by the Super-Kamiokande data on day and night spectra and zenith angle distribution of the events. Thus, the neutrino magnetic moment solution of the solar neutrino problem can be unambiguously distinguished from the currently favoured oscillation solutions at Borexino. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 44]
机译:假设观察到的太阳中微子的不足是由于它们的过渡磁矩与太阳磁场的相互作用,我们得出了即将进行的Borexino实验的预测。使用了三种不同的模型磁场分布,它们可以很好地全局拟合当前可用的太阳中微子数据。Borexino的预期信号显着低于太阳中微子问题的LMA,LOW和VO中微子振荡解所预测的信号。它与SMA振荡解决方案类似,但是,该方法在白天和晚上的光谱和事件的天顶角分布方面受到超级神冈数据的强烈反对。因此,可以将太阳中微子问题的中微子磁矩解与目前在Borexino的振荡解明确地区分开。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:44]

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