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Holography in Rindler Space

机译:林德勒空间中的全息术

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This thesis addresses certain quantum aspects of the event horizon using the AdS/CFT correspondence. This correspondence is profound since it describes a quantum theory of gravity in d + 1 dimensions from the perspective of a dual quantum field theory living in d dimensions. We begin by considering Rindler space which is the part of Minkowski space seen by an observer with a constant proper acceleration. Because it has an event horizon, Rindler space has been studied in great detail within the context of quantum field theory. However, a quantum gravitational treatment of Rindler space is handicapped by the fact that quantum gravity in flat space is poorly understood. By contrast, quantum gravity in anti-de Sitter space (AdS), is relatively well understood via the AdS/CFT correspondence.;Taking this cue, we construct Rindler coordinates for AdS (Rindler-AdS space) in d + 1 spacetime dimensions. In three spacetime dimensions, we find novel one-parameter families of stationary vacua labeled by a rotation parameter beta. The interesting thing about these rotating Rindler-AdS spaces is that they possess an observer-dependent ergoregion in addition to having an event horizon.;Turning next to the application of AdS/CFT correspondence to Rindler-AdS space, we posit that the two Rindler wedges in AdSd +1 are dual to an entangled conformal field theory (CFT) that lives on two boundaries with geometry R x Hd-1. Specializing to three spacetime dimensions, we derive the thermodynamics of Rindler-AdS space using the boundary CFT. We then probe the causal structure of the spacetime by sending in a time-like source and observe that the CFT "knows" when the source has fallen past the Rindler horizon. We conclude by proposing an alternate foliation of Rindler-AdS which is dual to a CFT living in de Sitter space.;Towards the end, we consider the concept of weak measurements in quantum mechanics, wherein the measuring instrument is weakly coupled to the system being measured. We consider such measurements in the context of two examples, viz. the decay of an excited atom, and the tunneling of a particle trapped in a well, and discuss the salient features of such measurements.
机译:本文利用AdS / CFT对应关系解决了事件视界的某些量子方面。这种对应关系意义深远,因为它从存在于d维的对偶量子场论的角度描述了d + 1维的引力量子理论。我们首先考虑Rindler空间,它是Minkowski空间的一部分,观察者以恒定的适当加速度看到它。由于它具有事件视界,因此在量子场论的背景下对Rindler空间进行了详细的研究。但是,由于对平面空间中的量子引力了解甚少,因此妨碍了Rindler空间的量子引力处理。相比之下,通过AdS / CFT对应关系可以相对很好地理解anti-de Sitter空间(AdS)中的量子引力。基于此,我们构建了d + 1时空维度的AdS(Rindler-AdS空间)的Rindler坐标。在三个时空维度中,我们发现了由旋转参数β标记的新颖的固定真空单参数族。这些旋转的Rindler-AdS空间的有趣之处在于,除了具有事件视界之外,它们还具有依赖于观察者的ergo区域。接下来,将AdS / CFT对应关系应用于Rindler-AdS空间,我们假定两个Rindler AdSd +1中的楔形是纠缠共形场理论(CFT)的对偶,该共形共形场理论生活在两个几何R x Hd-1的边界上。专门针对三个时空维度,我们使用边界CFT推导了Rindler-AdS空间的热力学。然后,我们通过发送类似时间的数据源来探究时空的因果结构,并观察到CFT“知道”该数据源何时超出Rindler的视野。最后,我们提出了Rindler-AdS的另一种叶状结构,它与居住在de Sitter空间中的CFT有双重关系。最后,我们考虑了量子力学中弱测量的概念,其中测量仪器与系统弱耦合。测量。我们在两个例子的上下文中考虑这种测量。激发原子的衰变,以及阱中捕获的粒子的隧穿,并讨论了此类测量的显着特征。

著录项

  • 作者

    Samantray, Prasant.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Theoretical physics.;Quantum physics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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