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首页> 外文期刊>Modern Physics Letters, A >Remarks on distinguishability of Schwarzschild spacetime and thermal Minkowski spacetime using Resonance Casimir-Polder interaction
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Remarks on distinguishability of Schwarzschild spacetime and thermal Minkowski spacetime using Resonance Casimir-Polder interaction

机译:浅谈Schwarzschild Spacetime和Thermal Minkowski Spacetime使用谐振Casimir-Bolder互动的分辨性

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One perceives same response of a single-atom detector when placed at a point outside the horizon in Schwarzschild spacetime to that of a static single-atom detector in thermal Minkowski spacetime. So one cannot distinguish Schwarzschild spacetime from thermal Minkowski spacetime by using a single-atom detector. We show that, for Schwarzschild spacetime, beyond a characteristic length scale which is proportional to the inverse of the surface gravity kappa, the Resonance Casimir-Polder interaction (RCPI) between two entangled atoms is characterized by a 1/L-2 power-law provided the atoms are located close to the horizon. However, the RCPI between two entangled atoms follows a 1/L power-law decay for the thermal Minkowski spacetime. Seemingly, it appears that the spacetimes can be distinguished from each other using the RCPI behavior. But our further exploration leads to the conclusion that the length scale limit beyond a characteristic value is not compatible with the local flatness of the spacetime.
机译:一个人感知单个原子检测器的响应在施瓦茨柴尔斯时代的地平线以外的点外到热Minkowski时空中的静态单原子检测器的点。因此,可以通过使用单个原子检测器将Schwarzschild Spacetime与热Minkowski Spacetime区分开来。我们表明,对于Schwarzschild时空,超出与表面重力κ的逆比例的特征长度,其两个缠结原子之间的共振Casimir-Bolder相互作用(RCPI)的特征在于1 / L-2动力法如果原子靠近地平线。然而,两个缠绕的原子之间的RCPI遵循一个用于热Minkowski时空的1 / L Power-Law衰减。似乎,似乎可以使用RCPI行为彼此区分时分。但我们的进一步探索导致了结论,超出特征值超出特征值的长度限制与时空的局部平坦度不兼容。

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