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Atom-interferometric test of the equivalence principle at the 10⁻¹² level

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arxiv 2005.11624 v2 pith:RROCKFZA submitted 2020-05-23 physics.atom-ph gr-qcquant-ph

Atom-interferometric test of the equivalence principle at the 10⁻¹² level

classification physics.atom-ph gr-qcquant-ph
keywords texttimesequivalenceprincipleaccelerationanglesarisingatom
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Does gravity influence local measurements? We use a dual-species atom interferometer with $2\,\text{s}$ of free-fall time to measure the relative acceleration between $^{85}$Rb and $^{87}$Rb wave packets in the Earth's gravitational field. Systematic errors arising from kinematic differences between the isotopes are suppressed by calibrating the angles and frequencies of the interferometry beams. We find an E\"otv\"os parameter of $\eta = [1.6\; \pm\; 1.8\; \text{(stat)}\; \pm \; 3.4 \; \text{(sys)}] \times 10^{-12}$, consistent with zero violation of the equivalence principle. With a resolution of up to $1.4 \times 10^{-11} \, g$ per shot, we demonstrate a sensitivity to $\eta$ of $5.4 \times 10^{-11}\,/\sqrt{\text{Hz}}$.

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