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September 29, 2021Physical Review Letters67 citationsOpen Access

Momentum Entanglement for Atom Interferometry

FAFabian AndersAIAlexander IdelPFPolina Feldmann

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Abstract

Compared to light interferometers, the flux in cold-atom interferometers is low and the associated shot noise is large. Sensitivities beyond these limitations require the preparation of entangled atoms in different momentum modes. Here, we demonstrate a source of entangled atoms that is compatible with state-of-the-art interferometers. Entanglement is transferred from the spin degree of freedom of a Bose-Einstein condensate to well-separated momentum modes, witnessed by a squeezing parameter of -3.1(8) dB. Entanglement-enhanced atom interferometers promise unprecedented sensitivities for quantum gradiometers or gravitational wave detectors.

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Cite This Study

Anders et al. (2021) studied this question.

synapsesocial.com/papers/69d832ed7392c8ce61bee950https://doi.org/10.1103/physrevlett.127.140402
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