论文标题

跨不同图片,宇宙状态和系统 - 锁相互作用的页面驱动器构造的稳健性

Robustness of the Page-Wootters construction across different pictures, states of the universe and system-clock interactions

论文作者

Rijavec, Simone

论文摘要

在量子理论中,时间的概念取决于摇摇欲坠的地面。解决此问题的一种方法是将通常的背景时间参数作为原始实体,并通过物理系统之间的相关性来解释其出现。 Page and Wootters(1983)采用了这种方法,他展示了如何通过其两个子系统之间的相关性从固定量子宇宙中出现的时间,其中一个是另一个子系统的时钟。在这项工作中,我研究了跨不同图片,宇宙和时钟相互作用的各个图片构造的稳健性,从而阐明了宇宙子系统之间相关性的作用和性质。我首先展示如何通过单一的基础更改在海森伯格图片中制定页面驱动器的构造。我认为宇宙的纯净和混合状态并将分析扩展到包括时钟与宇宙其他子系统之间的相互作用。该研究揭示了施工工作所需的相关性。有趣的是,只要与时钟没有相互作用,就不需要纠缠。该研究还表明,这些相互作用可能导致宇宙中某些混合状态的非自动进化。在一个简单的两级系统中,这方面在人们期望强烈的相对论效果的量表上变得相关。在这些尺度上,我还观察到系统时间方向的反转。

In quantum theory, the concept of time rests on shaky ground. One way to address this problem is to remove the usual background time parameter as a primitive entity and explain its emergence via correlations between physical systems. This approach was adopted by Page and Wootters (1983), who showed how time can emerge in a stationary quantum universe from the correlations between two of its subsystems, one of them acting as a clock for the other. In this work, I study the robustness of the Page-Wootters construction across different pictures, states of the universe and clock interactions, clarifying the role and the nature of the correlations between the subsystems of the universe. I start by showing how to formulate the Page-Wootters construction in the Heisenberg picture via a unitary change of basis. I consider both pure and mixed states of the universe and extend the analysis to include interactions between the clock and the other subsystem of the universe. The study reveals what kind of correlations are necessary for the construction to work. Interestingly, entanglement is not required as long as there are no interactions with the clock. The study also shows that these interactions can lead to a non-unitary evolution for some mixed states of the universe. In a simple two-level system, this aspect becomes relevant at scales where one would expect strong relativistic effects. At these scales, I also observe an inversion in the system's direction of time.

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