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Physical constraints on causality-violating spacetimes in general relativity.

机译:广义相对论中违反因果关系时空的物理约束。

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摘要

The theoretical possibility of global causality violation has long been a problem within general relativity, for there exists a large number of model spacetimes known to admit closed time-like curves, trajectories allowing a timelike observer to return to some point in her own past. However, nearly all such known models have some unphysical feature. These physicality issues rendered causality-violation to the status of an interesting but safely theoretical problem until twenty years ago, when the appearance of a new type of causality-violating model spacetime and the subsequent proliferation of new models admitting closed timelike curves forced the attention of the community to the issue, and made causality violation and its possible physical consequences an active area of research within general relativity. This paper focuses on some of the older causality-violating spacetimes which model matter sources with cylindrical symmetry. By describing how cylindrically-symmetric solutions can be embedded within a spatially bounded and physically realistic body which outwardly has the symmetry of a torus or ring, it is shown that the chief problem of physical plausibility which these older solutions possess can be resolved. The intention is to make these models active candidates for consideration in future experiments to test general relativity's prediction that causality violation is a phenomenon that could be observed in the real world. Attending chapters describe physical systems other than rotating objects that can alter a local observer's experience of time to a substantial extent, including an electrically-charged massive shell slowing time in its interior (though not affecting causality) and a class of trajectories in the Reissner-Nordstrom background that could in principle allow a timelike observer to reverse her personal arrow of time relative to other observers in the spacetime as a whole. The paper concludes with a discussion of one of the plausibility problems with the 'consistency conjectures' which attempt to address some of the apparently paradoxical consequences of time travel.
机译:总体因果关系违背的理论可能性长期以来一直是广义相对论中的一个问题,因为已知存在大量模型时空,它们允许闭合类似时间的曲线,轨迹允许类似时间的观察者回到自己过去的某个点。但是,几乎所有此类已知模型都具有某些非物理特征。这些物理性问题使因果关系违背了一个有趣但安全的理论问题,直到二十年前,当一种新型因果关系违背模型时空的出现和随后接纳封闭时态曲线的新模型的出现迫使人们关注时空。社区,并将因果关系违规及其可能造成的物理后果作为广义相对论中的一个活跃研究领域。本文着重介绍一些较早的因果关系时空模型,这些时空模型用圆柱对称性来模拟物质源。通过描述如何将圆柱对称解嵌入到空间上有界且物理上逼真的物体中,该物体向外具有圆环或环的对称性,这表明可以解决这些较早解所具有的物理合理性的主要问题。目的是使这些模型成为活跃的候选对象,以供将来在实验中测试广义相对论的预测,即因果关系违反是一种在现实世界中可以观察到的现象。参加的章节介绍了除了旋转物体以外的物理系统,这些物理系统可以在很大程度上改变本地观察者的时间体验,包括带电的大型壳内部的时间变慢(尽管不影响因果关系)以及Reissner中的一类轨迹。诺德斯特罗姆(Nordstrom)的背景,原则上可以允许像时间一样的观察者相对于整个时空相对于其他观察者扭转她的个人时间箭头。本文最后讨论了“一致性猜想”中的一个似然性问题,该问题试图解决时间旅行的一些显然自相矛盾的后果。

著录项

  • 作者

    Janca, Andrew Joseph.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Physics Theory.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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