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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Misleading inferences from discretization of empty spacetime: Snyder-noncommutativity case study
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Misleading inferences from discretization of empty spacetime: Snyder-noncommutativity case study

机译:空时空离散化的误导性推论:Snyder-非交换性案例研究

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Alternative approaches to the study of the quantum gravity problem are handling the role of spacetime very differently. Some are focusing on the analysis of one or another novel formulation of "empty spacetime", postponing to later stages the introduction of particles and fields, while other approaches assume that spacetime should only be an emergent entity. We here argue that recent progress in the covariant formulation of quantum mechanics, suggests that empty spacetime is not physically meaningful. We illustrate our general thesis in the specific context of the noncommutative Snyder spacetime, which is also of some intrinsic interest, since hundreds of studies were devoted to its analysis. We show that empty Snyder spacetime, described in terms of a suitable kinematical Hilbert space, is discrete, but this is only a formal artifact: the discreteness leaves no trace on the observable properties of particles on the physical Hilbert space.
机译:研究量子引力问题的替代方法对时空的作用有很大不同。一些人专注于对“空时空”的一种或另一种新颖表述的分析,将粒子和场的引入推迟到以后的阶段,而其他方法则假定时空应仅是一个紧急实体。我们在这里认为,量子力学协变公式的最新进展表明,空时空在物理上没有意义。我们在非可交换Snyder时空的特定背景下说明了我们的一般论点,这也是一些内在的兴趣,因为数百项研究致力于其分析。我们证明,以合适的运动学希尔伯特空间来描述的空斯奈德时空是离散的,但这只是形式上的伪影:离散性对物理希尔伯特空间上的粒子的可观察特性没有任何痕迹。

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