| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 10723350 | Physics Letters B | 2012 | 6 Pages | 
Abstract
												Recent theoretical works have shown that matter swapping between two parallel braneworlds could occur under the influence of magnetic vector potentials. In our visible world, galactic magnetism possibly produces a huge magnetic potential. As a consequence, this Letter discusses the possibility to observe neutron disappearance into another braneworld in certain circumstances. The setup under consideration involves stored ultracold neutrons - in a vessel - which should exhibit a non-zero probability p to disappear into an invisible brane at each wall collision. An upper limit of p is assessed based on available experimental results. This value is then used to constrain the parameters of the theoretical model. Possible improvements of the experiments are discussed, including enhanced stimulated swapping by artificial means.
											Keywords
												
											Related Topics
												
													Physical Sciences and Engineering
													Physics and Astronomy
													Nuclear and High Energy Physics
												
											Authors
												Michaël Sarrazin, Guillaume Pignol, Fabrice Petit, Valery V. Nesvizhevsky, 
											