Casimir-Polder interaction of neutrons with metal or dielectric surfaces

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Abstract

We predict a repulsive Casimir-Polder-type dispersion interaction between a single neutron and a metal or dielectric surface. We consider a scenario where a single neutron is subject to an external magnetic field. Due to its intrinsic magnetic moment, the neutron then forms a magnetisable two-level system which can exchange virtual photons with a nearby surface. The resulting dispersion interaction between a purely magnetic object (neutron) and a purely electric one (surface) is found to be repulsive, in contrast to the typical attractive interaction between electric objects. Its magnitude is considerably smaller than the standard atom-surface Casimir-Polder force due to the magnetic nature of the interaction and the smallness of the electron-to-neutron mass ratio. Nevertheless, we show that it can be comparable to the gravitational potential of the same surface and should be taken into consideration in future neutron interference experiments.

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Gebhart, V., Klatt, J., Cronenberg, G., Filter, H., & Buhmann, S. Y. (2021). Casimir-Polder interaction of neutrons with metal or dielectric surfaces. New Journal of Physics, 23(7). https://doi.org/10.1088/1367-2630/ac0e55

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