论文标题
非高斯量子波动在中微子纠缠中的作用
Role of non-gaussian quantum fluctuations in neutrino entanglement
论文作者
论文摘要
中微子数量密度较大的环境中中微子的风味演变是天体物理学和中微子风味物理学联系的一个开放问题。在与此问题有关的许多未解决的问题中,尚待确定中微子 - 中微子中微子连贯的散射是否会导致中微子之间的非平凡量子纠缠,以及这是否会以有意义的方式影响风味的演变。为了进一步了解这个问题,我们在这里研究了两个相互作用的中微子束的简单系统,并使用Husimi Quasi-Quasi-obobyability分布获得了该系统探索的确切相位空间。我们观察到,耦合引起的纠缠导致相位空间中有很大的定位,并在很大程度上非高斯量子波动。使用单中微子和两中性熵说明了中微子纠缠与量子波动之间的联系。此外,我们提出了一种近似相位空间方法来描述相互作用的中微子问题,其中确切的演化被一组独立的平均场演变所取代,并用初始条件进行统计抽样。相空间方法提供了一种简单准确的方法来描述中微子纠缠问题的总特征。在非绝热制度中使用时间独立和时间依赖的汉顿人显示应用。
The flavor evolution of neutrinos in environments with large neutrino number densities is an open problem at the nexus of astrophysics and neutrino flavor physics. Among the many unanswered questions pertaining to this problem, it remains to be determined whether neutrino-neutrino coherent scattering can give rise to nontrivial quantum entanglement among neutrinos, and whether this can affect the flavor evolution in a meaningful way. To gain further insight into this question, here we study a simple system of two interacting neutrino beams, and obtain the exact phase-space explored by this system using the Husimi quasi-probability distribution. We observe that the entanglement induced by the coupling leads to strong delocalization in phase-space with largely non-Gaussian quantum fluctuations. The link between the neutrino entanglement and quantum fluctuations is illustrated using the one- and two-neutrino entropy. In addition, we propose an approximate phase-space method to describe the interacting neutrinos problem, where the exact evolution is replaced by a set of independent mean-field evolutions with a statistical sampling of the initial conditions. The phase-space approach provides a simple and accurate method to describe the gross features of the neutrino entanglement problem. Applications are shown using time-independent and time-dependent Hamiltonians in the non-adiabatic regime.