论文标题

未来的柔软奇异性,出生的类似粉红色的领域和颗粒

Future soft singularities, Born-Infeld-like fields and particles

论文作者

Galkina, Olesya, Kamenshchik, Alexander Yu.

论文摘要

我们考虑了宇宙演变的不同情况,其中存在时空的几何形状中的奇点或某些非分析性,试图回答以下问题:当后者接近奇异性时,是否有可能保存与宇宙中所选择的量子场相对应的粒子的概念?我们研究具有不同类型的拉格朗日人的标量场,写下了这些字段在奇异性附近的线性扰动的二阶微分方程。如果两种独立的溶液都是规则的,则将量子粒子的真空状态构建为相应变量的高斯函数。如果至少两种独立解决方案中的一种具有单数渐近行为,那么我们将无法定义创建和an灭操作员并构建真空。这意味着粒子的概念失去了感。 We show that at the approaching to the Big Rip singularity, particles corresponding to the phantom scalar field driving the evolution of the universe must vanish, while particles of other fields still can be defined.在特殊的三角电势的Tachyon场所描述的宇宙模型中,发生了大制动奇异性,我们看到(伪)鼠标颗粒不会穿过这种奇异性。为了增加该型号的灰尘,我们稍微改变了这种奇异性的特征,而鼠颗粒可以存活。最后,我们考虑一个具有标量场的模型,具有垂直电势,其中幻影分隔线交叉发生。在这里,颗粒在此交叉点的附近有很好的定义。

We consider different scenarios of the evolution of the universe, where the singularities or some non-analyticities in the geometry of the spacetime are present, trying to answer the following question: is it possible to conserve some kind of notion of particle corresponding to a chosen quantum field present in the universe when the latter approaches the singularity? We study scalar fields with different types of Lagrangians, writing down the second-order differential equations for the linear perturbations of these fields in the vicinity of a singularity. If both independent solutions are regular, we construct the vacuum state for quantum particles as a Gaussian function of the corresponding variable. If at least one of two independent solutions has a singular asymptotic behavior, then we cannot define the creation and the annihilation operators and construct the vacuum. This means that the very notion of particle loses sense. We show that at the approaching to the Big Rip singularity, particles corresponding to the phantom scalar field driving the evolution of the universe must vanish, while particles of other fields still can be defined. In the case of the model of the universe described by the tachyon field with a special trigonometric potential, where the Big Brake singularity occurs, we see that the (pseudo) tachyon particles do not pass through this singularity. Adding to this model some quantity of dust, we slightly change the characteristics of this singularity and tachyon particles survive. Finally, we consider a model with the scalar field with the cusped potential, where the phantom divide line crossing occurs. Here the particles are well defined in the vicinity of this crossing point.

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