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Quantum Theory of Non-Relativistic Particles Interacting with Gravity

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arxiv gr-qc/9511004 v2 pith:IL4M3P3C submitted 1995-11-01 gr-qc

Quantum Theory of Non-Relativistic Particles Interacting with Gravity

classification gr-qc
keywords particlesfieldgravitationalnon-relativisticgravityinteractingquantumself-interaction
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate the effects of the gravitational field on the quantum dynamics of non-relativistic particles. We consider N non-relativistic particles, interacting with the linearized gravitational field. Using the Feynman - Vernon influence functional technique, we trace out the graviton field, to obtain a master equation for the system of particles to first order in $G$. The effective interaction between the particles, as well as the self-interaction is non-local in time and in general non-markovian. We show that the gravitational self-interaction cannot be held responsible for decoherence of microscopic particles due to the fast vanishing of the diffusion function. For macroscopic particles though, it leads to diagonalization to the energy eigenstate basis, a desirable feature in gravity induced collapse models. We finally comment on possible applications.

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  1. Quantum gravitational contrast in creating Schr\"odinger cat state

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    A matter-wave interferometer with a Schrödinger cat state displaces the graviton vacuum into coherent states, with the left-right overlap providing a gravitational contrast that quantifies entanglement between matter ...