Entanglement and superposition are equivalent concepts in any physical theory
arXiv:2109.04446 · doi:10.1103/PhysRevLett.128.160402
Abstract
We prove that any two general probabilistic theories (GPTs) are entangleable, in the sense that their composite exhibits either entangled states or entangled measurements, if and only if they are both non-classical, meaning that neither of the state spaces is a simplex. This establishes the universal equivalence of the (local) superposition principle and the existence of global entanglement, valid in a fully theory-independent way. As an application of our techniques, we show that all non-classical GPTs exhibit a strong form of incompatibility of states and measurements, and use this to construct a version of the BB84 protocol that works in any non-classical GPT.
11 pages, 3 figures
References in corpus (4)
Cited by in corpus (18)
- Entanglement entropy, single-particle occupation probabilities, and short-range correlations
- Testing the quantum nature of gravity without entanglement
- Accessible fragments of generalized probabilistic theories, cone equivalence, and applications to witnessing nonclassicality
- Incompatibility of observables, channels and instruments in information theories
- Unbounded quantum backflow in two dimensions
- Postselected quantum hypothesis testing
- Partial coherence versus entanglement
- Cohering and decohering power of massive scalar fields under instantaneous interactions
- Generalized dynamical theories in phase space and the hydrogen atom
- Characterizing the superposition of arbitrary random quantum states and a known quantum state
- A Post-Quantum Associative Memory
- Spin-Energy Entanglement of a Time-Focused Neutron
- Relating CP divisibility of dynamical maps with compatibility of channels
- Classifying Entanglement by Algebraic Geometry
- The surprising persistence of time-dependent quantum entanglement
- Comparing quantum incompatibility of device sets from an operational perspective
- Decoupling local classicality from classical explainability: A noncontextual model for bilocal classical theory and a locally-classical but contextual theory
- One-shot and asymptotic classical capacity in general physical theories