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Pseudo-finslerian space-times and multirefringence

机译:伪Finslerian时空和多折射

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摘要

Ongoing searches for a quantum theory of gravity have repeatedly led to the suggestion that spacetime might ultimately be anisotropic (Finsler-like) and/or exhibit multirefringence (multiple signal cones). Multiple (and even anisotropic) signal cones can be easily dealt with in a unified manner, by writing down a single Fresnel equation to simultaneously encode all signal cones in an even-handed manner. Once one gets off the signal cone and attempts to construct a full multirefringent space-time metric the situation becomes more problematic. In the multirefringent case we shall report a significant no-go result: in multirefringent models there is no simple or compelling way to construct any unifying notion of pseudo-Finsler space-time metric, different from a monorefringenent model, where the signal cone structure plus a conformal factor completely specifies the full pseudo-Riemannian metric. To throw some light on this situation we use an analog model where both anisotropy and multirefringence occur simultaneously: biaxial birefringent crystal. But the significance of our results extends beyond the optical framework in which (purely for pedagogical reasons) we are working, and has implications for any attempt at introducing multirefringence and intrinsic anisotropies to any model of quantum gravity that has a low energy manifold-like limit.
机译:正在进行的对引力量子理论的搜索一再导致人们提出时空最终可能是各向异性的(类似于芬斯勒)和/或表现出多折射性(多个信号锥)。通过写下单个菲涅耳方程,以均匀的方式同时编码所有信号锥,可以轻松地以统一的方式处理多个(甚至各向异性)的信号锥。一旦脱离信号锥并试图构建完整的多折射时空度量标准,情况就会变得更加棘手。在多折射情况下,我们将报告重大的不合格结果:在多折射模型中,没有简单或令人信服的方法来构造伪芬斯勒时空度量的任何统一概念,这与单折射模型不同,后者的信号锥结构加上共形因子完全指定了完整的伪黎曼度量。为了更好地了解这种情况,我们使用了一个同时发生各向异性和多折射的模拟模型:双轴双折射晶体。但是,我们的结果的意义超出了我们正在研究的光学框架范围内(纯粹出于教学原因),并且对将多折射和本征各向异性引入具有低能流形极限的任何量子引力模型的尝试都具有影响。

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