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Constraining Majorana neutrino electromagnetic properties from the LMA-MSW solution of the solar neutrino problem

机译:从太阳中微子问题的LMA-MSW解决方案约束马约拉纳中微子的电磁特性

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In this paper we use solar neutrino data to derive stringent bounds on Majorana neutrino transition moments (TMs). Should such be present, they would contribute to the neutrino electron scattering cross section and hence alter the signal observed in Super-Kamiokande. Motivated by the growing robustness of the LMA-MSW solution of the solar neutrino problem indicated by recent data, and also by the prospects of its possible confirmation at KamLAND, we assume the validity of this solution, and we constrain neutrino TMs by using the latest global solar neutrino data. We find that all elements of the TM matrix can be bounded at the same time. Furthermore, we show how reactor data play a complementary role to the solar neutrino data, and use the combination of both data sets to improve the current bounds. Performing a simultaneous fit of LMA-MSW oscillation parameters and TMs we find that 6.3 x 10(-10) mu(B) and 2.0 x 10(-10) mu(B) are the 90% C.L. bounds from solar and combined solar + reactor data, respectively. Finally, we perform a simulation of the upcoming Borexino experiment and show that it will improve the bounds from today's data by roughly one order of magnitude. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 68]
机译:在本文中,我们使用太阳中微子数据来得出马约拉纳中微子跃迁矩(TMs)的严格界限。如果存在,它们将有助于中微子电子散射截面,并因此改变在超级神冈中观察到的信号。由于最近的数据表明,LMA-MSW解决太阳中微子问题的能力越来越强,并且有可能在KamLAND得到证实,因此我们假设该解决方案是正确的,并通过使用最新技术来约束中微子TM。全球太阳中微子数据。我们发现TM矩阵的所有元素都可以同时定界。此外,我们展示了反应堆数据如何与太阳中微子数据起互补作用,并使用这两个数据集的组合来改善电流范围。通过同时拟合LMA-MSW振荡参数和TM,我们发现6.3 x 10(-10)mu(B)和2.0 x 10(-10)mu(B)为90%C.L.分别来自太阳能和太阳能+反应堆数据的界限。最后,我们对即将到来的Borexino实验进行了仿真,结果表明,它将使当今数据的界限提高大约一个数量级。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:68]

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