Optically trapped atom interferometry using the clock transition of large<sup>87</sup>Rb Bose–Einstein condensates
P. A. Altin(Australian National University), R. P. Anderson(Monash University), J. E. Debs(Australian National University), Thomas M. Hanna(National Institute of Standards and Technology), Simon A. Haine(The University of Queensland), Gordon McDonald(The University of Sydney), T H Barter(Australian National University), N. P. Robins(Queensland Rail), D. Döring(Australian National University), J. D. Close(Australian National University)
Cited by 29
Related Papers
Bright Solitonic Matter-Wave Interferometer
|Physical Review Letters|2014|169
Precision atomic gravimeter based on Bragg diffraction
|New Journal of Physics|2013|149
Cold-atom gravimetry with a Bose-Einstein condensate
|Physical Review A|2011|136
Simultaneous Precision Gravimetry and Magnetic Gradiometry with a Bose-Einstein Condensate: A High Precision, Quantum Sensor
|Physical Review Letters|2016|131