Department of Energy and Process Engineering, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.
Phys Rev Lett. 2010 Jun 4;104(22):223003. doi: 10.1103/PhysRevLett.104.223003. Epub 2010 Jun 2.
We demonstrate that Casimir-Polder potentials can be entirely independent of temperature even when allowing for the relevant thermal photon numbers to become large. This statement holds for potentials that are due to low-energy transitions of a molecule placed near a plane metal surface whose plasma frequency is much larger than any atomic resonance frequencies. For a molecule in an energy eigenstate, the temperature independence is a consequence of strong cancellations between nonresonant potential components and those due to evanescent waves. For a molecule with a single dominant transition in a thermal state, upward and downward transitions combine to form a temperature-independent potential. The results are contrasted with the case of an atom whose potential exhibits a regime of linear temperature dependence. Contact with the Casimir force between a weakly dielectric and a metallic plate is made.
我们证明了即使考虑到相关的热光子数变得很大,卡西米尔-珀尔兹势也可以完全与温度无关。这种说法适用于由于放置在平面金属表面附近的分子的低能跃迁而产生的势,其中等离子体频率远大于任何原子共振频率。对于处于能量本征态的分子,温度无关性是由于非共振势分量与渐逝波引起的势分量之间的强烈抵消所致。对于处于热态且具有单个主要跃迁的分子,向上和向下跃迁结合在一起形成了与温度无关的势。结果与原子的情况形成了对比,原子的势表现出线性温度依赖性的范围。还讨论了弱介电体与金属板之间的卡西米尔力的接触。