A Bose-condensed, simultaneous dual species Mach-Zehnder atom interferometer
Abstract
This paper presents the first realisation of a simultaneous Rb -Rb Mach-Zehnder atom interferometer with Bose-condensed atoms. A number of ambitious proposals for precise terrestrial and space based tests of the Weak Equivalence Principle rely on such a system. This implementation utilises hybrid magnetic-optical trapping to produce spatially overlapped condensates with a duty cycle of 20s. A horizontal optical waveguide with co-linear Bragg beamsplitters and mirrors is used to simultaneously address both isotopes in the interferometer. We observe a non-linear phase shift on a non-interacting Rb interferometer as a function of interferometer time, , which we show arises from inter-isotope scattering with the co-incident Rb interferometer. A discussion of implications for future experiments is given.
Keywords
Cite
@article{arxiv.1401.5827,
title = {A Bose-condensed, simultaneous dual species Mach-Zehnder atom interferometer},
author = {C. C. N. Kuhn and G. D. McDonald and K. S. Hardman and S. Bennetts and P. J. Everitt and P. A. Altin and J. E. Debs and J. D. Close and N. P. Robins},
journal= {arXiv preprint arXiv:1401.5827},
year = {2014}
}
Comments
7 pages, 5 figures. The authors welcome comments and feedback on this manuscript