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- W4286111583 abstract "The Schrodinger-Newton equation has frequently been studied as a nonlinear modification of the Schrodinger equation incorporating gravitational self-interaction. However, there is no evidence yet as to whether nature actually behaves this way. This work investigates a possible way to experimentally test gravitational self-interaction. The effect of self-gravity on the interference of massive particles is studied by numerically solving the Schrodinger-Newton equation for a particle passing through a double-slit. The results show that the presence of gravitational self-interaction has an effect on the fringe width of the interference that can be tested in matter-wave interferometry experiments. Notably, this approach can distinguish between gravitational self-interaction and environment-induced decoherence, as the latter does not affect the fringe width. This result will also provide a way to test if gravity requires to be quantized on the scale of ordinary quantum mechanics." @default.
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- W4286111583 date "2022-07-21" @default.
- W4286111583 modified "2023-09-27" @default.
- W4286111583 title "Testing gravitational self-interaction via matter-wave interferometry" @default.
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- W4286111583 doi "https://doi.org/10.1103/physreva.106.012215" @default.
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