论文标题
洛伦兹对称的量子参考帧
Quantum Reference Frames for Lorentz Symmetry
论文作者
论文摘要
自首次引入以来,已经对量子参考框架(QRF)转换进行了广泛的讨论,从而将物理定律的协方差推广到量子域。尽管取得了重要成就,但仍缺乏对洛伦兹对称性的QRF转换的表述。目前的工作旨在填补这一空白。我们首先介绍了相对论量子力学的重新制定,而与任何首选时间切片的概念无关。基于此,我们定义了转换,这些转换是在不同相对论QRF的观点之间切换的。我们引入了“量子Lorentz变换”和“ Lorentz Boosts的叠加”的概念,该概念在量子粒子的外部自由度上。我们分析了两种效果,时间扩张的叠加和长度收缩的叠加,仅当参考框架表现出相对论和量子力学特征时才出现。最后,我们讨论如何通过测量相对论QRF的波包扩展来观察到效果。
Since their first introduction, Quantum Reference Frame (QRF) transformations have been extensively discussed, generalising the covariance of physical laws to the quantum domain. Despite important progress, a formulation of QRF transformations for Lorentz symmetry is still lacking. The present work aims to fill this gap. We first introduce a reformulation of relativistic quantum mechanics independent of any notion of preferred temporal slicing. Based on this, we define transformations that switch between the perspectives of different relativistic QRFs. We introduce a notion of ''quantum Lorentz transformations'' and ''superposition of Lorentz boosts'', acting on the external degrees of freedom of a quantum particle. We analyse two effects, superposition of time dilations and superposition of length contractions, that arise only if the reference frames exhibit both relativistic and quantum-mechanical features. Finally, we discuss how the effects could be observed by measuring the wave-packet extensions from relativistic QRFs.