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Light-pulse atom interferometry with entangled atom-optical elements

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arxiv 2202.05763 v2 pith:CUGNRHYS submitted 2022-02-11 quant-ph physics.atom-ph

Light-pulse atom interferometry with entangled atom-optical elements

classification quant-ph physics.atom-ph
keywords atomelementsfieldsatom-opticalinformationlightlight-pulsepath
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The analogs of optical elements in light-pulse atom interferometers are generated from the interaction of matter waves with light fields. As such, these fields possess quantum properties, which fundamentally lead to a reduced visibility in the observed interference. This loss is a consequence of the encoded information about the atom's path. However, the quantum nature of the atom-optical elements also gives an additional degree of freedom to reduce such effects: We demonstrate that entanglement between all light fields can be used to erase information about the atom's path and by that to partially recover the visibility. Thus, our work highlights the role of complementarity on atom-interferometric experiments.

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