Presentation + Paper
22 February 2018 Creating the first Bose-Einstein condensate in space
M. D. Lachmann, H. Ahlers, D. Becker, S. T. Seidel, T. Wendrich, E. M. Rasel, W. Ertmer
Author Affiliations +
Proceedings Volume 10549, Complex Light and Optical Forces XII; 1054909 (2018) https://doi.org/10.1117/12.2289686
Event: SPIE OPTO, 2018, San Francisco, California, United States
Abstract
On 23rd of January 2017 the first Bose-Einstein Condensate (BEC) in Space was created on-board the sounding rocket mission MAIUS-1. The successful launch marks a major advancement in the effort of performing matter wave interferometry with BECs on space vehicles. Its high BEC-flux enables more than 100 experiments during flight, characterizing the creation of BECs in space, their free evolution, state preparation, and the creation of cold atoms in highly dynamic environments. MAIUS-1 opens a new path towards space borne inertial sensing employing interferometers with high accuracy and sensitivity. Two follow-up missions will investigate dual-species interferometry. Recently several missions were proposed ranging from tests of the universality of free fall to gravimetry. Due to their small initial size and low expansion rates BECs are the ideal source for such an interferometric measurement. The findings of the mission will contribute to the NASA CAL project and BECCAL (NASA and DLR). This research is funded by DLR under grant 50WP1435.
Conference Presentation
© (2018) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
M. D. Lachmann, H. Ahlers, D. Becker, S. T. Seidel, T. Wendrich, E. M. Rasel, and W. Ertmer "Creating the first Bose-Einstein condensate in space", Proc. SPIE 10549, Complex Light and Optical Forces XII, 1054909 (22 February 2018); https://doi.org/10.1117/12.2289686
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CITATIONS
Cited by 2 scholarly publications.
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KEYWORDS
Interferometry

Rockets

Interferometers

Laser stabilization

Physics

Semiconductor lasers

Rubidium

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