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Particle quantum states with indefinite mass and neutrino oscillations

机译:具有无限质量和中微子振荡的粒子量子状态

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In this work we develop a mathematical formalism which allows obtaining oscillation formula for neutrino of any energy. We demonstrate that in the ultra-relativistic limit the results obtained in this new approach agree with the previously used phenomenological theory which is only applicable to ultra-relativistic neutrinos. To this end we do the following. The Hilbert spaces of particle states are constructed in such a way that the neutrinos are combined in a multiplet with its components being considered as different quantum states of a single particle. The same is done for the charged leptons and the down- and up-type quarks. In the theory based on the Lagrangian of the fermion sector of the Standard Model modified in accordance with this construction, the phenomenon of neutrino oscillations arises as a direct consequence of the general principles of quantum field theory. Using the example of the pion decay, when the resulting neutrino has to be ultra-relativistic, it is shown that the neutrino states produced in the decay process can be described by a superposition of states with different masses and identical canonical momenta with very high accuracy. (C) 2019 Elsevier Inc. All rights reserved.
机译:在这项工作中,我们开发了一种数学形式主义,允许获得任何能量的中微子的振荡公式。我们证明,在超相对论的极限中,这种新方法中获得的结果与先前使用的现象理论同意,该理论仅适用于超相对论的中微子。为此,我们做到以下了。颗粒状态的Hilbert空间以这样的方式构造,即中微子在多功能中组合,其部件被认为是单个颗粒的不同量子状态。对于带电的leptons和下型夸克来说,相同。在基于根据这种结构修改的标准模型的光栅扇区的拉格朗日的理论中,中微子振荡现象作为量子场理论一般原则的直接后果。当所得的中微子腐蚀的情况下,当所得的中性细胞必须超相对论时,显示在衰变过程中产生的中微子状态可以通过具有不同群众的叠加和具有非常高的精度的相同规范动量的状态来描述。 。 (c)2019 Elsevier Inc.保留所有权利。

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