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Relativistic Planck-scale polymer

机译:相对论的普朗克规模聚合物

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Polymer quantum mechanics has been studied as a simplified picture that reflects some of the key properties of Loop Quantum Gravity; however, while the fate of relativistic symmetries in Loop Quantum Gravity is still not established, it is usually assumed that the discrete polymer structure should lead to a breakdown of relativistic symmetries. We here focus for simplicity on a one-spatial-dimension polymer model and show that relativistic symmetries are deformed, rather than being broken. The specific type of deformed relativistic symmetries which we uncover appears to be closely related to analogous descriptions of relativistic symmetries in some noncommutative spacetimes. This also contributes to an ongoing effort attempting to establish whether the “quantum-Minkowski limit” of Loop Quantum Gravity is a noncommutative spacetime.
机译:高分子量子力学已作为简化的图片进行了研究,它反映了环量子引力的某些关键特性。然而,尽管环量子引力中相对论对称性的命运仍未确立,但通常认为离散的聚合物结构应导致相对论对称性的破坏。为了简化起见,我们在这里集中讨论一维多维聚合物模型,并表明相对论对称是变形的,而不是被破坏的。我们发现的变形相对论对称性的特定类型似乎与某些非可交换时空中相对论对称性的类似描述密切相关。这也有助于正在进行的工作,试图确定环路量子引力的“量子-Minkowski极限”是否为非交换时空。

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