Creation of two vortex-entangled beams in a vortex beam collision with a plane wave
arXiv:1110.5760 · doi:10.1103/PhysRevA.85.033813
Abstract
Physics of photons and electrons carrying orbital angular momentum (OAM) is an exciting field of research in quantum optics and electron microscopy. Usually, one considers propagation of these vortex beams in a medium or external fields and their absorption or scattering on fixed targets. Here we consider instead a beam-beam collision. We show that elastic scattering of a Bessel vortex beam with a counterpropagating plane wave naturally leads to two vortex-entangled outgoing beams. The vortex entanglement implies that the two final particles are entangled not only in their orbital helicities but also in opening angles of their momentum cones. Our results are driven by kinematics of vortex-beam scattering and apply to particle pairs of any nature: e-gamma, e^+e^-, ep, etc. This collisional vortex entanglement can be used to create pairs of OAM-entangled particles of different nature, and to transfer a phase vortex, for example, from low-energy electrons to high-energy protons.
4 pages, 2 figures; v2: title modified, introduction rewritten and expanded, results unchanged
References in corpus (7)
- Semiclassical Dynamics of Electron Wave Packet States with Phase Vortices
- Relativistic Electron Vortex Beams: Angular Momentum and Spin-Orbit Interaction
- Generation of High-Energy Photons with Large Orbital Angular Momentum by Compton Backscattering
- Compton Upconversion of Twisted Photons: Backscattering of Particles with Non-Planar Wave Functions
- Colliding particles carrying non-zero orbital angular momentum
- Scattering of twisted particles: extension to wave packets and orbital helicity
- Transverse coincidence-structures in spontaneous parametric down-conversion with orbital angular momentum: Theory
Cited by in corpus (12)
- Theory and applications of free-electron vortex states
- Spatio-temporal vortex beams and angular momentum
- Scattering of wave packets with phases
- Measuring the phase of the scattering amplitude with vortex beams
- Entanglement of Orbital Angular Momentum in Non-Sequential Double Ionization
- Radiative Capture of Twisted Electrons by Bare Ions
- Vortex photon generation via spin-to-orbital angular momentum transfer in nonlinear Compton scattering
- Gaussian and Airy wave packets of massive particles with orbital angular momentum
- Generation of vortex particles via generalized measurements
- Probing phase of a scattering amplitude beyond the plane-wave approximation
- Generation of Ultrarelativistic Vortex Leptons with Large Orbital Angular Momenta
- Scattering of a twisted electron wavepacket by a finite laser pulse