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Predictions from high scale mixing unification hypothesis

机译:大规模混合统一假设的预测

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Starting with a€?high scale mixing unificationa€? hypothesis, we investigate the renormalization group evolution of mixing parameters and masses for both Dirac and Majorana-type neutrinos. Following this hypothesis, the PMNS mixing parameters are taken to be identical to the CKM ones at a unifying high scale. Then, they are evolved to a low scale using MSSM renormalization group equations. For both types of neutrinos, the renormalization group evolution naturally results in a non-zero and small value of leptonic mixing angle e???13. One of the important predictions of this analysis is that, in both cases, the mixing angle e???23 turns out to be non-maximal for most of the parameter range. We also elaborate on the important differences between Dirac and Majorana neutrinos within our framework and how to experimentally distinguish between the two scenarios. Furthermore, for both cases, we also derive constraints on the allowed parameter range for the SUSY breaking and unification scales, for which this hypothesis works. The results can be tested by the present and future experiments.
机译:从大规模混合统一开始假设下,我们研究了Dirac型和Majorana型中微子混合参数和质量的重整化组演化。根据这个假设,在统一的大规模条件下,PMNS的混合参数被认为与CKM的参数相同。然后,使用MSSM重归一化组方程将它们演化为小规模。对于这两种类型的中微子,重归一化群的演化自然会导致非零且小值的轻子混合角e≤13。该分析的重要预测之一是,在两种情况下,对于大多数参数范围而言,混合角eθ23都不是最大的。我们还详细说明了Dirac和Majorana中微子之间的重要区别,以及如何通过实验区分这两种情况。此外,对于这两种情况,我们还推导了SUSY分解和统一尺度的允许参数范围的约束,该假设适用于该约束。可以通过当前和将来的实验来测试结果。

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