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存在热激发表面模式时的 Casimir-Polder 相互作用。

Casimir-Polder interactions in the presence of thermally excited surface modes.

机构信息

1] Laboratoire de Physique des Lasers, Université Paris 13, Sorbonne Paris-Cité, F-93430, Villetaneuse, France [2] CNRS, UMR 7538, LPL, 99 Avenue J.-B. Clément, F-93430 Villetaneuse, France.

1] Laboratoire de Physique des Lasers, Université Paris 13, Sorbonne Paris-Cité, F-93430, Villetaneuse, France [2] CNRS, UMR 7538, LPL, 99 Avenue J.-B. Clément, F-93430 Villetaneuse, France [3] Laboratório de Superfície, DF-CCEN, Cx. Postal 5086 Universidade Federal de Paraíba, 58051-900 João Pessoa, Paraíba, Brazil.

出版信息

Nat Commun. 2014 Jul 9;5:4364. doi: 10.1038/ncomms5364.

Abstract

The temperature dependence of the Casimir-Polder interaction addresses fundamental issues for understanding vacuum and thermal fluctuations. It is highly sensitive to surface waves, which, in the near field, govern the thermal emission of a hot surface. Here we use optical reflection spectroscopy to monitor the atom-surface interaction potential between a Cs*(7D3/2) atom and a hot sapphire surface at distances of ~100 nm. In our experiments, that explore a large range of temperatures (500-1,000 K), the surface is at thermal equilibrium with the vacuum. The observed increase of the interaction with temperature, by up to 50%, relies on the coupling between atomic virtual transitions in the infrared range and thermally excited surface-polariton modes. We extrapolate our findings to a broad distance range, from the isolated atom to the short distances relevant to physical chemistry. Our work also opens the prospect of controlling atom-surface interactions by engineering thermal fields.

摘要

卡西米尔-珀尔帖相互作用的温度依赖性解决了理解真空和热涨落的基本问题。它对表面波非常敏感,在近场中,表面波控制着热表面的热发射。在这里,我们使用光学反射谱来监测 Cs*(7D3/2)原子与热蓝宝石表面之间的原子-表面相互作用势,距离约为 100nm。在我们的实验中,我们探索了很大的温度范围(500-1000K),表面处于与真空的热平衡状态。观察到的相互作用随温度的升高而增加,最多可达 50%,这依赖于原子在红外范围内的虚拟跃迁与热激发表面极化激元模式之间的耦合。我们将我们的发现外推到一个广泛的距离范围,从孤立原子到与物理化学相关的短距离。我们的工作还为通过工程热场来控制原子-表面相互作用开辟了前景。

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