Gravitationally induced decoherence vs space-time diffusion: testing the quantum nature of gravity
arXiv:2203.01982 · doi:10.1038/s41467-023-43348-2
Abstract
We consider two interacting systems when one is treated classically while the other system remains quantum. Consistent dynamics of this coupling has been shown to exist, and explored in the context of treating space-time classically. Here, we prove that such hybrid dynamics necessarily results in decoherence of the quantum system, and a breakdown in predictability in the classical phase space. We further prove that a trade-off between the rate of this decoherence and the degree of diffusion induced in the classical system is a general feature of all classical quantum dynamics; long coherence times require strong diffusion in phase-space relative to the strength of the coupling. Applying the trade-off relation to gravity, we find a relationship between the strength of gravitationally-induced decoherence versus diffusion of the metric and its conjugate momenta. This provides an experimental signature of theories in which gravity is fundamentally classical. Bounds on decoherence rates arising from current interferometry experiments, combined with precision measurements of mass, place significant restrictions on theories where Einstein's classical theory of gravity interacts with quantum matter. We find that part of the parameter space of such theories are already squeezed out, and provide figures of merit which can be used in future mass measurements and interference experiments.
16 pages main + 21 pages appendices
References in corpus (21)
- A Spin Entanglement Witness for Quantum Gravity
- Gravitationally-induced entanglement between two massive particles is sufficient evidence of quantum effects in gravity
- Lower and Upper Bounds on CSL Parameters from Latent Image Formation and IGM Heating
- Gravitationally Mediated Entanglement: Newtonian Field vs. Gravitons
- Underground test of gravity-related wave function collapse
- Optomechanical sensing of spontaneous wave-function collapse
- Heating of trapped ultracold atoms by collapse dynamics
- Witnessing the non-classical nature of gravity in the presence of unknown interactions
- Enhancing Gravitational Interaction between Quantum Systems by a Massive Mediator
- Bounds on quantum communication via Newtonian gravity
- Hybrid classical-quantum formulations ask for hybrid notions
- On the Energy Increase in Space-Collapse Models
- Two-slit diffraction with highly charged particles: Niels Bohr's consistency argument that the electromagnetic field must be quantized
- Principle of least decoherence for Newtonian semi-classical gravity
- Unbounded generators of dynamical semigroups
- Testing the quantum nature of gravity without entanglement
- Constraining CSL strength parameter from standard cosmology and spectral distortions of CMBR
- Testing the nonclassicality of spacetime: what can we learn from Bell-Bose et al.-Marletto-Vedral experiments?
- The weak field limit of quantum matter back-reacting on classical spacetime
- On GKLS dynamics for local operations and classical communication
- Do Gedankenexperiments compel quantization of gravity?
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- The Quantum Measurement Problem: A Review of Recent Trends
- Entanglement in Markovian hybrid classical-quantum theories of gravity
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