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NASA NTRS · 20170005272

Development of an Atom Interferometer Gravity Gradiometer for Earth Sciences

Abstract

We report progress towards a prototype atom interferometer gravity gradiometer for Earth science studies from a satellite in low Earth orbit.The terrestrial prototype has a target sensitivity of 8 x 10(exp -2) E/Hz(sup 1/2) and consists of two atom sources running simultaneous interferometers with interrogation time T = 300 ms and 12 hk photon recoils, separated by a baseline of 2 m. By employing Raman side band cooling and magnetic lensing, we will generate atomic ensembles with N = 10(exp 6) atoms at a temperature of 3 nK. The sensitivity extrapolates to 7 x 10(exp -5) E/Hz(sup 1/2) in microgravity on board a satellite. Simulations derived from this sensitivity demonstrate a monthly time-variable gravity accuracy of 1 cm equivalent water height at 200 km resolution, yielding an improvement over GRACE by 1-2 orders of magnitude. A gravity gradiometer with this sensitivity would also benefit future planetary, lunar, and asteroidal missions.

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BibTeXRIS

Rakholia, A., Sugarbaker, A., Black, A., Kasecivh, M., Saif, B., Luthcke, S., Callahan, L., Seery, B., Feinberg, L., Mather, J., Keski-Kuha, R.. 2017-06-05. Development of an Atom Interferometer Gravity Gradiometer for Earth Sciences. https://ntrs.nasa.gov/citations/20170005272

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