论文标题

非惯性量子时钟帧导致非恒星动力学

Non-inertial quantum clock frames lead to non-Hermitian dynamics

论文作者

Paiva, Ismael L., Te'eni, Amit, Peled, Bar Y., Cohen, Eliahu, Aharonov, Yakir

论文摘要

时间的操作方法是相对论理论的基石,正如适当的时间的概念所证明的那样。但是,在标准量子力学中,时间是外部参数。最近,已经尝试了许多尝试在关系框架内延长适当时间的量子力学概念。在这里,我们使用类似的想法与相对论的质量能量等效性相结合,通过内部时钟系统研究加速的巨大量子粒子。我们表明,从粒子的内部时钟的角度来看,随之而来的演变是非热的。该结果不依赖于时钟的特定实现。特别的结果,我们证明,从任何一个粒子的时钟的角度来看,两个重力相互作用的颗粒的有效哈密顿量都是非热的。

The operational approach to time is a cornerstone of relativistic theories, as evidenced by the notion of proper time. In standard quantum mechanics, however, time is an external parameter. Recently, many attempts have been made to extend the notion of proper time to quantum mechanics within a relational framework. Here, we use similar ideas combined with the relativistic mass-energy equivalence to study an accelerating massive quantum particle with an internal clock system. We show that the ensuing evolution from the perspective of the particle's internal clock is non-Hermitian. This result does not rely on specific implementations of the clock. As a particular consequence, we prove that the effective Hamiltonian of two gravitationally interacting particles is non-Hermitian from the perspective of the clock of either particle.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源