Quantum Mechanics at the Planck Scale

J. Hartle
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引用次数: 2

Abstract

Usual quantum mechanics requires a fixed, background, spacetime geometry and its associated causal structure. A generalization of the usual theory may therefore be needed at the Planck scale for quantum theories of gravity in which spacetime geometry is a quantum variable. The elements of generalized quantum theory are briefly reviewed and illustrated by generalizations of usual quantum theory that incorporate spacetime alternatives, gauge degrees of freedom, and histories that move forward and backward in time. A generalized quantum framework for cosmological spacetime geometry is sketched. This theory is in fully four-dimensional form and free from the need for a fixed causal structure. Usual quantum mechanics is recovered as an approximation to this more general framework that is appropriate in those situations where spacetime geometry behaves classically.
普朗克尺度下的量子力学
通常的量子力学需要一个固定的、背景的、时空的几何形状及其相关的因果结构。因此,可能需要在普朗克尺度上对通常的理论进行推广,以使时空几何成为一个量子变量。广义量子理论的要素简要回顾和说明通常的量子理论的概括,包括时空的选择,规范的自由度,和历史向前和向后移动的时间。简述了宇宙学时空几何的广义量子框架。这个理论是完全四维的形式,不需要固定的因果结构。通常的量子力学被恢复为这个更一般的框架的近似值,它适用于那些时空几何表现经典的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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