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Stress-energy tensor in colliding plane wave space-times: An approximation procedure

机译:碰撞平面波时空中的应力能张量:一个近似过程

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In a recent work on the quantization of a massless scalar field in a particular colliding plane wave space-time, we computed the vacuum expectation value of the stress-energy tensor on the physical state which corresponds to the Minkowski vacuum before the collision of the waves. We did such a calculation in a region close to both the Killing-Cauchy horizon and the folding singularities that such a space-time contains. In the present paper, we give a suitable approximation procedure to compute this expectation value, in the conformal coupling case, throughout the causal past of the center of the collision. This will allow us to approximately study the evolution of such an expectation value from the beginning of the collision until the formation of the Killing-Cauchy horizon, We start with a null expectation value before the arrival of the waves, which then acquires non-zero values at the beginning of the collision and grows unbounded towards the Killing-Cauchy horizon. The value near the horizon is compatible with our previous result, which means that such an approximation may be applied to other colliding plane wave space-times. Even with this approximation, the initial modes propagated into the interaction region contain a function which cannot be calculated exactly and to ensure the correct regularization of the stress-energy tensor with the point-splitting technique, this function must be given up to adiabatic order four of approximation. (C) 1998 Elsevier Science B.V. [References: 68]
机译:在最近的关于在特定碰撞平面波时空中对无质量标量场进行量化的工作中,我们计算了与波碰撞之前的Minkowski真空相对应的物理状态下的应力能张量的真空期望值。我们在接近Killing-Cauchy地平线和这种时空包含的折叠奇点的区域中进行了这样的计算。在本文中,我们给出了一个合适的近似过程,可以在整个碰撞中心因果关系中的共形耦合情况下计算该期望值。这将使我们能够近似地研究这种期望值从碰撞开始到形成Killing-Cauchy层的演化。我们从波浪到达之前的零期望值开始,然后获得非零值在碰撞开始时一直保持不变,并且向着Killing-Cauchy地平线无限地增长。接近地平线的值与我们先前的结果兼容,这意味着可以将这种近似值应用于其他碰撞平面波时空。即使采用这种近似方法,传播到相互作用区域的初始模式仍包含一个无法精确计算的函数,并且要确保使用点分离技术对应力-能量张量进行正确的正则化,必须将该函数赋予绝热四阶近似。 (C)1998 Elsevier Science B.V. [参考:68]

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