论文标题

两个纠缠引力极化对象之间的共振相互作用

Resonance interaction between two entangled gravitational polarizable objects

论文作者

Hu, Yongshun, Hu, Jiawei, Yu, Hongwei, Wu, Puxun

论文摘要

我们研究了两个线性量子重力框架中真空中波动的量子引力场引起的两个纠缠重力极化对象之间的谐振四极菌极相互作用。我们的结果表明,相互作用能量在近乎政权中的$ r^{ - 5} $的行为,并且在远面制度中与$ r^{ - 1} $成比例的振幅减小,在远方制度中,$ r $是两个对象之间的距离。与两个物体处于基态的情况相比,当物体处于纠缠状态时,量子引力相互作用会显着增强。值得注意的是,在远处的政权中,谐振量子引力相互作用可以给予牛顿电位的量子校正,因为极端远大于单极 - 单泊尔单位量子量子重力相互作用。

We investigate the resonance quadrupole-quadrupole interaction between two entangled gravitationally polarizable objects induced by a bath of fluctuating quantum gravitational fields in vacuum in the framework of linearized quantum gravity. Our result shows that, the interaction energy behaves as $r^{-5}$ in the near regime, and oscillates with a decreasing amplitude proportional to $r^{-1}$ in the far regime, where $r$ is the distance between the two objects. Compared to the case when the two objects are in their ground states, the quantum gravitational interaction is significantly enhanced when the objects are in an entangled state. Remarkably, in the far regime, the resonance quantum gravitational interaction can give the dominating quantum correction to the Newtonian potential, since the extremum is much greater than the monopole-monopole quantum gravitational interaction.

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