Elastic scattering of vortex electrons provides direct access to the Coulomb phase
arXiv:1608.06551 · doi:10.1103/PhysRevD.94.076001
Abstract
Vortex electron beams are freely propagating electron waves carrying adjustable orbital angular momentum with respect to the propagation direction. Such beams were experimentally realized just a few years ago and are now used to probe various electromagnetic processes. So far, these experiments used the single vortex electron beams, either propagating in external fields or impacting a target. Here, we investigate the elastic scattering of two such aligned vortex electron beams and demonstrate that this process allows one to experimentally measure features which are impossible to detect in the usual plane-wave scattering. The scattering amplitude of this process is well approximated by two plane-wave scattering amplitudes with different momentum transfers, which interfere and give direct experimental access to the Coulomb phase. This phase (shift) affects the scattering of all charged particles and has thus received significant theoretical attention but was never probed experimentally. We show that a properly defined azimuthal asymmetry, which has no counterpart in plane-wave scattering, allows one to directly measure the Coulomb phase as function of the scattering angle.
23 pages, 6 figures
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- Kinematic surprises in twisted particle collisions
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- Generation of vortex particles via generalized measurements
- Probing phase of a scattering amplitude beyond the plane-wave approximation
- Unambiguous detection of high energy vortex states via the superkick effect
- Decay of the vortex muon
- Observability of the superkick effect within a quantum-field-theoretical approach
- Spin-Textured Neutron Beams with Orbital Angular Momentum
- symmetry in the vortex muon decay
- Wave function of a photon produced in the resonant scattering of twisted light by relativistic ions
- Threshold effects in high-energy vortex state collisions
- Quantum scattering beyond the plane-wave approximation
- Angular momentum dynamics of vortex particles in accelerators
- Universal features of high-energy scattering of Laguerre-Gaussian states
- Vortex particles in axially symmetric fields and applications of the quantum Busch theorem