vix.ing · top · new · best · stats · spec

EPR effect in gravitational field: nature of non-locality

2000/05/01 by Horst von Borzeszkowski, Michael B. Mensky · 1 citation
Mathematics · Physics and Astronomy · #Classical mechanics #Crystallography and Radiation Phenomena #EPR paradox #Einstein #Field (mathematics) #Geometry #Gravitation #Gravitational field #Laser-Matter Interactions and Applications #Laser-Plasma Interactions and Diagnostics #Locality #Mathematics #Physics #Quantum #Quantum electrodynamics #Quantum entanglement #Quantum mechanics #Quantum nonlocality #Realization (probability) #Scalar (mathematics) #Spin (aerodynamics) #Theoretical physics #cond-mat #gr-qc #hep-th #quant-ph

paper · pdf · doi:10.1016/s0375-9601(00)00230-9

published as Phys.Lett. A269 (2000) 197-203 · 12 pages, LATEX

openalex publication_date 2000/05/01 · arxiv created 2000/07/24 · arxiv updated 2009/11/30 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05

Abstract

The realization of the Einstein-Podolsky-Rosen effect by the correlation of spin projections of two particles created in the decay of a single scalar particle is considered for particles propagating in gravitational field. The absence of a global definition of spatial directions makes it unclear whether the correlation may exist in this case and, if yes, what directions in distant regions must be correlated. It is shown that in a gravitational field an approximate correlation may exist and the correlated directions are connected with each other by the parallel transport along the world lines of the particles. The reason for this is that the actual origin of the quantum non-locality is founded in local processes.

Citations

Cited by