论文标题
部分可观测时空混沌系统的无模型预测
Perturbative approaches to quantum field theory in curved space-time
论文作者
论文摘要
尽管在弯曲的空间时间中,在量子场理论中进行了大量工作,但在这些系统中粒子过程的扰动计算并没有很多结果。预计此类过程在宇宙的早期阶段以及近乎相对论的物体(如黑洞)以及最近在有效的冷凝物质系统的有效领域理论中很重要。在弯曲的太空时间中进行扰动计算的困难与量化弯曲空间时间的实际难度有关。这表明需要研究新的近似值,并比较进行计算的不同方法的结果。在本文中,我们比较了粒子散射问题的不同扰动方法,并用示例进行了说明。特别是,我们查看1+1维静态空间。我们还检查了1+1罗伯逊 - 漫游世界中的时空粒子产生,在那里我们发现弯曲的空间LSZ公式与形式上的形式主义相比产生了新的信息。
Despite the large amount of work done in quantum field theory in curved space-times, there are not great many results available for perturbative calculations of particle processes in these systems. Such processes are expected to be important in the early stages of the universe, as well as near highly relativistic objects like black holes and, recently, in effective field theories of condensed matter systems. The difficulties with carrying out perturbative calculations in curved space-times are related to the practical difficulty of quantizing in curved space-times. This suggests the need for investigating new approximations and comparing the results of different methods of carrying out the calculations. In this paper, we compare different perturbative approaches to particle scattering problems and illustrate them with examples. In particular, we look at a 1+1 dimensional static spacetime. We also examine the spacetime particle generation in a 1+1 Robertson-Walker universe, where we find that the curved space LSZ formula yields new information compared to the in-in formalism.