Generation of vortex particles via generalized measurements
arXiv:2201.07997 · doi:10.1140/epjc/s10052-022-10991-w
Abstract
The hard X-ray twisted photons and relativistic massive particles with orbital angular momentum -- vortex electrons, muons, protons, etc. -- have many potential applications in high-energy and nuclear physics. However, such states can be obtained so far mainly via diffraction techniques, not applicable for relativistic energies. Here we show that the vortex states of different particles, including hadrons, ions, and nuclei, can be generated in a large class of processes with two final particles simply by altering a postselection protocol. Thanks to entanglement and to the uncertainty relations, an evolved state of a final particle becomes twisted if the momentum azimuthal angle of the other particle is measured with a large uncertainty. We give several examples, including Cherenkov and undulator radiation, particle collisions with intense laser beams, . This technique can be adapted for ultrarelativistic lepton and hadron beams of linear colliders, and it can also facilitate the development of sources of X-ray and -range twisted photons at storage rings and free-electron lasers.
11 pages, 2 figures
References in corpus (15)
- Twisting of light around rotating black holes
- Angular Momentum of Twisted Radiation from an Electron in Spiral Motion
- Colliding particles carrying non-zero orbital angular momentum
- Promises and challenges of high-energy vortex states collisions
- Twisted electron in a strong laser wave
- Elastic scattering of vortex electrons provides direct access to the Coulomb phase
- Scattering of wave packets with phases
- Semiclassical probability of radiation of twisted photons in the ultrarelativistic limit
- Structured x-ray beams from twisted electrons by inverse Compton scattering of laser light
- Classical and quantum particle dynamics in univariate background fields
- Elastic scattering of twisted neutrons by nuclei
- Decay of the vortex muon
- Single-shot characterization of vector beams by generalized measurements
- Double-twisted spectroscopy with delocalized atoms
- Vortex particles in axially symmetric fields and applications of the quantum Busch theorem
Cited by in corpus (10)
- Shifting physics of vortex particles to higher energies via quantum entanglement
- Vortex photon generation via spin-to-orbital angular momentum transfer in nonlinear Compton scattering
- Unambiguous detection of high energy vortex states via the superkick effect
- Generation of vortex electrons by atomic photoionization
- Studying highly relativistic vortex-electron beams by atomic scattering
- Generation of Ultrarelativistic Vortex Leptons with Large Orbital Angular Momenta
- Vavilov-Cherenkov emission with a twist: a study of the final entangled state
- Emission of twisted photons by a scalar charged particle in a strong magnetic field
- Dynamics of relativistic vortex electrons in external laser fields
- Universal features of high-energy scattering of Laguerre-Gaussian states