Applying standard quantum tomography to data generated by Schrödinger-Newton dynamics yields angle-set-dependent reconstructed covariances that can violate the Heisenberg bound, providing an operational signature of classical gravity.
Cool- ing of a levitated nanoparticle to the motional quantum ground state.Science, 367(6480):892–895, February 2020
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Tomography of a Macroscopic Quantum State influenced by Classical Self-Gravity
Applying standard quantum tomography to data generated by Schrödinger-Newton dynamics yields angle-set-dependent reconstructed covariances that can violate the Heisenberg bound, providing an operational signature of classical gravity.