论文标题
两个镜子之间加速两个纠缠原子的共振相互作用
Resonance interaction of two entangled atoms accelerating between two mirrors
论文作者
论文摘要
我们研究了两个纠缠相同的原子与量化标量磁场真空的共振相互作用,并在两个镜之间加速。我们展示了如何通过非固体运动的原子构型来操纵两种原子纠缠状态的辐射过程。将海森堡图片与对称操作员订购,真空波动和自反应贡献结合在一起。我们根据海森堡运动方程中的自反应贡献,评估两个原子系统的共振能量转移和两个原子系统能量的松弛率。我们研究了这两个量的变化,其中具有相关参数,例如原子加速度,原子间距离和相对于边界的位置。我们表明,可以通过调整上述参数来控制能级移动和放松率。
We study the resonance interaction between two entangled identical atoms coupled to a quantized scalar field vacuum, and accelerating between two mirrors. We show how radiative processes of the two-atom entangled state can be manipulated by the atomic configuration undergoing noninertial motion. Incorporating the Heisenberg picture with symmetric operator ordering, the vacuum fluctuation and the self-reaction contributions are distinguished. We evaluate the resonance energy shift and the relaxation rate of energy of the two atom system from the self-reaction contribution in the Heisenberg equation of motion. We investigate the variation of these two quantities with relevant parameters such as atomic acceleration, interatomic distance and position with respect to the boundaries. We show that both the energy level shift and the relaxation rate can be controlled by tuning the above parameters.