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Measuring the Angular Momentum of a Neutron Using Earth's Rotation

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arxiv 2407.09307 v3 pith:2EXPLJJD submitted 2024-07-12 quant-ph

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keywords couplingeffectneutronsagnacangularexperimentslowermomentum
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A coupling between Earths rotation and orbital angular momentum (OAM), known as the Sagnac effect, is observed in entangled neutrons produced using a spin echo interferometer. After correction for instrument systematics the measured coupling is within 5% of theory, with an uncertainty of 7.2%. The OAM in our setup is transverse to the propagation direction and scales linearly with wavelength (4 A - 12.75 A), hence the coupling can be varied, without mechanically rotating the device. Therefore, the systematic error is lower than in previous experiments. The detected transverse OAM of our beam corresponds to 4098 +- 295 hbar A-1, 5 orders of magnitude lower than in previous neutron experiments, thereby demonstrating the feasibility of using the Sagnac effect to definitively measure neutron OAM and paving the way towards observations of the quantum Sagnac effect

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  1. Inertia

    gr-qc 2025-02 conditional novelty 3.0 of 10

    Intrinsic spin couples to gravity via rotation, producing a mass-independent gravitomagnetic Stern-Gerlach force that violates free-fall universality, but at an unmeasurably small level.

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