The quantum gravity seeds for laws of nature

Vincent Lam, Daniele Oriti
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Abstract

We discuss the challenges that the standard (Humean and non-Humean) accounts of laws face within the framework of quantum gravity where space and time may not be fundamental. This paper identifies core (meta)physical features that cut across a number of quantum gravity approaches and formalisms and that provide seeds for articulating updated conceptions that could account for QG laws not involving any spatio-temporal notions. To this aim, we will in particular highlight the constitutive roles of quantum entanglement, quantum transition amplitudes and quantum causal histories. These features also stress the fruitful overlap between quantum gravity and quantum information theory.
自然法则的量子引力种子
我们讨论了标准(休谟和非休谟)定律解释在量子引力框架内所面临的挑战,在量子引力框架内,空间和时间可能不是基本的。本文指出了一些跨越量子引力方法和形式主义的核心(元)物理特征,并为阐明更新的概念提供了基础,这些概念可以解释不涉及任何时空概念的量子引力定律。为此,我们将特别强调量子纠缠、量子转换幅度和量子因果历史的构成作用。这些特征还强调了量子引力与量子信息论之间富有成效的重叠。
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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