Dynamical Entanglement in Particle Scattering
arXiv:quant-ph/0506212 · doi:10.1142/S0217751X05029241
Abstract
This paper explores the connections between particle scattering and quantum information theory in the context of the non-relativistic, elastic scattering of two spin-1/2 particles. An untangled, pure, two-particle in-state is evolved by an S-matrix that respects certain symmetries and the entanglement of the pure out-state is measured. The analysis is phrased in terms of unitary, irreducible representations (UIRs) of the symmetry group in question, either the rotation group for the spin degrees of freedom or the Galilean group for non-relativistic particles. Entanglement may occurs when multiple UIRs appear in the direct sum decomposition of the direct product in-state, but it also depends of the scattering phase shifts. \keywords{dynamical entanglement, scattering, Clebsch-Gordan methods}
6 pages, submitted to Int. J. Mod. Phys. A as part of MRST 2005 conference proceedings
References in corpus (3)
Cited by in corpus (9)
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- Entanglement and scattering in quantum electrodynamics: S-matrix information from an entangled spectator particle
- Limits on entanglement in rotationally-invariant scattering of spin systems
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- Relativistic Entanglement from Relativistic Quantum Mechanics in the Rest-Frame Instant Form of Dynamics