English

Impact of Casimir-Polder interaction on Poisson-spot diffraction at a dielectric sphere

Quantum Physics 2016-08-24 v1 Atomic Physics

Abstract

Diffraction of matter-waves is an important demonstration of the fact that objects in nature possess a mixture of particle-like and wave-like properties. Unlike in the case of light diffraction, matter-waves are subject to a vacuum-mediated interaction with diffraction obstacles. Here we present a detailed account of this effect through the calculation of the attractive Casimir-Polder potential between a dielectric sphere and an atomic beam. Furthermore, we use our calculated potential to make predictions about the diffraction patterns to be observed in an ongoing experiment where a beam of indium atoms is diffracted around a silicon dioxide sphere. The result is an amplification of the on-axis bright feature which is the matter-wave analogue of the well-known `Poisson spot' from optics. Our treatment confirms that the diffraction patterns resulting from our complete account of the sphere Casimir-Polder potential are indistinguishable from those found via a large-sphere non-retarded approximation in the discussed experiments, establishing the latter as an adequate model.

Keywords

Cite

@article{arxiv.1606.09472,
  title  = {Impact of Casimir-Polder interaction on Poisson-spot diffraction at a dielectric sphere},
  author = {Joshua Leo Hemmerich and Robert Bennett and Thomas Reisinger and Stefan Nimmrichter and Johannes Fiedler and Horst Hahn and Herbert Gleiter and Stefan Yoshi Buhmann},
  journal= {arXiv preprint arXiv:1606.09472},
  year   = {2016}
}

Comments

13 pages, 10 figures