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Statistical Thermodynamics for a Non-commutative Special Relativity: Emergence of a Generalized Quantum Dynamics

机译:非可交换相对论的统计热力学:广义量子动力学的出现

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There ought to exist a description of quantum field theory which does not depend on an external classical time. To achieve this goal, in a recent paper we have proposed a non-commutative special relativity in which space-time and matter degrees of freedom are treated as classical matrices with arbitrary commutation relations, and a space-time line element is defined using a trace. In the present paper, following the theory of Trace Dynamics, we construct a statistical thermodynamics for the non-commutative special relativity, and show that one arrives at a generalized quantum dynamics in which space and time are non-classical and have an operator status. In a future work, we will show how standard quantum theory on a classical space-time background is recovered from here.
机译:应该有一个不依赖外部经典时间的量子场论的描述。为了实现这一目标,在最近的论文中,我们提出了一种非可交换的相对论,其中时空和物质自由度被视为具有任意换向关系的经典矩阵,并使用迹线定义了时空线元素。 。在本文中,根据迹线动力学理论,我们为非交换性相对论构造了一个统计热力学,并表明一个人到达了广义的量子动力学,其中时空是非经典的,并且具有算子状态。在未来的工作中,我们将展示如何从此处恢复经典时空背景下的标准量子理论。

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