High Precision, Quantum-Enhanced Gravimetry with a Bose-Einstein Condensate
Abstract
We show that the inherently large interatomic interactions of a Bose-Einstein condensate (BEC) can enhance the sensitivity of a high precision cold-atom gravimeter beyond the shot-noise limit (SNL). Through detailed numerical simulation, we demonstrate that our scheme produces spin-squeezed states with variances up to 14 dB below the SNL, and that absolute gravimetry measurement sensitivities between 2 and 5 times below the SNL are achievable with BECs between and in atom number. Our scheme is robust to phase diffusion, imperfect atom counting, and shot-to-shot variations in atom number and laser intensity. Our proposal is immediately achievable in current laboratories, since it needs only a small modification to existing state-of-the-art experiments and does not require additional guiding potentials or optical cavities.
Cite
@article{arxiv.2005.00368,
title = {High Precision, Quantum-Enhanced Gravimetry with a Bose-Einstein Condensate},
author = {Stuart S. Szigeti and Samuel P. Nolan and John D. Close and Simon A. Haine},
journal= {arXiv preprint arXiv:2005.00368},
year = {2020}
}
Comments
5 pages, 5 figures + supplemental material. Close to published version