Effects of ultra-light dark matter on the gravitational quantum well
arXiv:1707.08612 · doi:10.1142/S0218271818500980
Abstract
We study the influence of a periodic perturbation of the effective masses of the nucleons, due to the assumed semi-classical ultra-light dark matter background, on the motion of neutrons in a gravitational quantum well. Our focus is on the transition probability between the lowest two energy states, with the Rabi frequency in the kHz region corresponding to the series of "sweet spot" dark matter masses in the eV ballpark. The relevant probability is written in terms of the specific mass and of the effective coupling to the ordinary matter. These parameters can be constrained by the non-observation of any significant deviations of the measured transition probabilities from the dark-matter-free picture.
6 pages, 2 figures
References in corpus (6)
- Ultralight scalars as cosmological dark matter
- Results from a search for dark matter in the complete LUX exposure
- Current status of direct dark matter detection experiments
- Searching for dark matter and variation of fundamental constants with laser and maser interferometry
- Rotation curves of high-resolution LSB and SPARC galaxies with fuzzy and multistate (ultra-light boson) scalar field dark matter
- Brief History of Ultra-light Scalar Dark Matter Models