On inference of quantization from gravitationally induced entanglement
arXiv:2206.00558 · doi:10.1116/5.0101334
Abstract
Observable signatures of the quantum nature of gravity at low energies have recently emerged as a promising new research field. One prominent avenue is to test for gravitationally induced entanglement between two mesoscopic masses prepared in spatial superposition. Here we analyze such proposals and what one can infer from them about the quantum nature of gravity, as well as the electromagnetic analogues of such tests. We show that it is not possible to draw conclusions about mediators: even within relativistic physics, entanglement generation can equally be described in terms of mediators or in terms of non-local processes -- relativity does not dictate a local channel. Such indirect tests therefore have limited ability to probe the nature of the process establishing the entanglement as their interpretation is inherently ambiguous. We also show that cosmological observations already demonstrate some aspects of quantization that these proposals aim to test. Nevertheless, the proposed experiments would probe how gravity is sourced by spatial superpositions of matter, an untested new regime of quantum physics.
23 pages, 3 figures
References in corpus (25)
- A Spin Entanglement Witness for Quantum Gravity
- Gravitationally-induced entanglement between two massive particles is sufficient evidence of quantum effects in gravity
- Motional Quantum Ground State of a Levitated Nanoparticle from Room Temperature
- A constrained scheme for Einstein equations based on Dirac gauge and spherical coordinates
- Gravitationally Mediated Entanglement: Newtonian Field vs. Gravitons
- Creating and Verifying a Quantum Superposition in a Micro-optomechanical System
- Realization of a complete Stern-Gerlach interferometer: Towards a test of quantum gravity
- Locality in quantum gravity and string theory
- Using an atom interferometer to infer gravitational entanglement generation
- Newton, entanglement, and the graviton
- Witnessing the non-classical nature of gravity in the presence of unknown interactions
- Enhancing Gravitational Interaction between Quantum Systems by a Massive Mediator
- Qudits for Witnessing Quantum Gravity Induced Entanglement of Masses Under Decoherence
- On two recent proposals for witnessing nonclassical gravity
- Two-slit diffraction with highly charged particles: Niels Bohr's consistency argument that the electromagnetic field must be quantized
- Gravitational effects in macroscopic quantum systems: a first-principles analysis
- On the Significance of Interferometric Revivals for the Fundamental Description of Gravity
- Post-Newtonian gravitational effects in quantum interferometry
- Testing the nonclassicality of spacetime: what can we learn from Bell-Bose et al.-Marletto-Vedral experiments?
- Schrödinger's cat for de Sitter spacetime
- Limits on inference of gravitational entanglement
- Optimal Fidelity Witnesses for Gravitational Entanglement
- Squeezing the Axion
- Nonclassicality of axion-like dark matter through gravitational self-interactions
- Do Gedankenexperiments compel quantization of gravity?
Cited by in corpus (25)
- Massive quantum systems as interfaces of quantum mechanics and gravity
- Detecting single gravitons with quantum sensing
- What gravity mediated entanglement can really tell us about quantum gravity
- Gravity entanglement, quantum reference systems, degrees of freedom
- Testing the quantum nature of gravity without entanglement
- Classical theories of gravity produce entanglement
- Gravitational Harmonium: Gravitationally Induced Entanglement in a Harmonic Trap
- On the origin of force sensitivity in tests of quantum gravity with delocalised mechanical systems
- Entanglement Generation and Decoherence in a Two-Qubit System Mediated by Relativistic Quantum Field
- Photonic Implementation of Quantum Gravity Simulator
- On tests of the quantum nature of gravitational interactions in presence of non-linear corrections to quantum mechanics
- The gauge-relativity of quantum light, matter, and information
- Conditions for graviton emission in the recombination of a delocalized mass
- Self-gravitational dephasing of quasi-classical Stern-Gerlach trajectories
- A truly relativistic gravity mediated entanglement protocol using superpositions of rotational energies
- Circuit locality from relativistic locality in scalar field mediated entanglement
- Newton's laws of motion generating gravity-mediated entanglement
- Angular Momentum Entanglement Mediated By General Relativistic Frame Dragging
- On the Relative Distance of Entangled Systems in Emergent Spacetime Scenarios
- Benchmarks for quantum communication via gravity
- Coherence and Entanglement in a Non-commutative Spacetime
- Beyond Entanglement: Diagnosing quantum mediator dynamics in gravitationally mediated experiments
- Subsystems (in)dependence in GIE proposals
- When does entanglement through gravity imply gravitons?
- Existing experiments suffice to indirectly verify the quantum essence of gravity