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Quantum mechanics without spacetime II: Noncommutative geometry and the free point particle

机译:没有时空的量子力学II:非对易几何和自由点粒子

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In a recent paper we have suggested that a formulation of quantum mechanics should exist, which does not require the concept of time, and that the appropriate mathematical language for such a formulation is noncommutative differential geometry. In the present paper we discuss this formulation for the free point particle, by introducing a commutation relation for a set of noncommuting coordinates. The sought for background independent quantum mechanics is derived from this commutation relation for the coordinates. We propose that the basic equations are invariant under automorphisms which map one set of coordinates to another - this is a natural generalization of diffeomorphism invariance when one makes a transition to noncommutative geometry. The background independent description becomes equivalent to standard quantum mechanics if a spacetime manifold exists, because of the proposed automorphism invariance. The suggested basic equations also give a quantum gravitational description of the free particle. [References: 10]
机译:在最近的论文中,我们建议应该存在一种量子力学的公式,它不需要时间的概念,并且这种公式的合适的数学语言是非交换微分几何。在本文中,我们通过为一组非交换坐标引入一个交换关系,来讨论这种针对自由点粒子的公式。寻求的背景无关的量子力学是从该坐标的换向关系导出的。我们提出,在将一组坐标映射到另一组坐标的自同构下,基本方程式是不变的-这是当微分同构不变性转换为非对易几何时的自然概括。如果存在时空流形,则由于提出的自同构不变性,与背景无关的描述等同于标准量子力学。建议的基本方程式还给出了自由粒子的量子引力描述。 [参考:10]

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