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Neutrino Oscillations and Lorentz Invariance Violation

机译:中微子振荡和洛伦兹不变性违规

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This work explores the possibility of resorting to neutrino phenomenology to detect evidence of new physics, caused by the residual signals of the supposed quantum structure of spacetime. In particular, this work investigates the effects on neutrino oscillations and mass hierarchy detection, predicted by models that violate Lorentz invariance, preserving the spacetime isotropy and homogeneity. Neutrino physics is the ideal environment where conducting the search for new “exotic” physics, since the oscillation phenomenon is not included in the original formulation of the minimal Standard Model (SM) of particles. The confirmed observation of the neutrino oscillation phenomenon is, therefore, the first example of physics beyond the SM and can indicate the necessity to resort to new theoretical models. In this work, the hypothesis that the supposed Lorentz Invariance Violation (LIV) perturbations can influence the oscillation pattern is investigated. LIV theories are indeed constructed assuming modified kinematics, caused by the interaction of massive particles with the spacetime background. This means that the dispersion relations are modified, so it appears natural to search for effects caused by LIV in physical phenomena governed by masses, as in the case of neutrino oscillations. In addition, the neutrino oscillation phenomenon is interesting since there are three different mass eigenstates and in a LIV scenario, which preserves isotropy, at least two different species of particle must interact.
机译:这项工作探讨了采用空间空间的假定量子结构的残余信号引起的中微子现象学检测新物理学证据的可能性。特别是,这项工作调查了对中微子振荡和质量层次检测的影响,由违反Lorentz不变性的模型预测,保留了空间各向同性和均匀性。中微子物理学是对新的“异国情调”物理进行搜索的理想环境,因为振荡现象不包括在最小标准模型(SM)的颗粒的原始配方中。因此,确认的中微子振荡现象的观察是超出SM的物理学的第一个例子,并且可以表明诉诸新的理论模型的必要性。在这项工作中,调查了假设的Lorentz不变性违规(LIV)扰动的假设可以影响振荡模式。 Liv理论确实是假设修饰的运动学构建,由巨大颗粒与时空背景的相互作用引起的。这意味着修改了分散关系,因此看起来很自然地寻找由群体治理的物理现象的LIV引起的效果,如中微子振荡的情况。此外,中微子振荡现象是有趣的,因为存在三种不同的质量特征,并且在保持各向同性的LIV场景中,至少两种不同的颗粒必须相互作用。

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