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Information content of the gravitational field of a quantum superposition

2019/05/15 by Alessio Belenchia, Robert M. Wald, Flaminia Giacomini +3 · 1 citation
Physics and Astronomy · Medicine · #Quantum Mechanics and Applications #Advanced Thermodynamics and Statistical Mechanics #Biofield Effects and Biophysics

paper · doi:10.1142/s0218271819430016

Abstract

When a massive quantum body is put into a spatial superposition, it is of interest to consider the quantum aspects of the gravitational field sourced by the body. We argue that in order to understand how the body may become entangled with other massive bodies via gravitational interactions, it must be thought of as being entangled with its own Newtonian-like gravitational field. Thus, a Newtonian-like gravitational field must be capable of carrying quantum information. Our analysis supports the view that table-top experiments testing entanglement of systems interacting via gravity do probe the quantum nature of gravity, even if no “gravitons” are emitted during the experiment.

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