DOE OSTI · 1670252
Modeling of Atom Interferometer Accelerometer
Abstract
This report presents the theoretical effort to model and simulate the atom-interferometer accelerometer operating in a highly mobile environment. Multitudes of non-idealities may occur in such a rapidly-changing environment with a large acceleration whose amplitude and direction both change quickly. We studied the undesired effect of high mobility in the atom-interferometer accelerator in a detailed model and a simulator. The undesired effects include the atom cloud's movement during Raman pulses, the Doppler effect due to the relative movement between the atom-cloud and the supporting platform, the finite atom cloud temperature, and the lateral movement of the atom cloud. We present the relevant feed-forward mitigation strategies for each identified non-ideality to neutralize the impact and obtain accurate acceleration measurements.
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Soh, Daniel Beom Soo, Biedermann, Grant, Lee, Jongmin, Schwindt, Peter. 2020-09-01. Modeling of Atom Interferometer Accelerometer. https://doi.org/10.2172/1670252
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