The decay of structured neutrons is an incoherent sum of plane-wave decays, and the proton angular distribution inherits the neutron state's geometry, including a forward dip for vortex neutrons and discrete rotational symmetries for spin-orbit states.
Generation of neutron Airy beams
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
The Airy wave packet is a solution to the potential-free Schrodinger equation that exhibits remarkable properties such as self-acceleration, non-diffraction, and self-healing. Although Airy beams are now routinely realized with electromagnetic waves and electrons, the implementation with neutrons has remained elusive due to small transverse coherence lengths, low fluence rates, and the absence of neutron lenses. In this work, we overcome these challenges through a holographic approach and present the first experimental demonstration of neutron Airy beams. The presented techniques pave the way for fundamental physics studies with Airy beams of non-elementary particles, the development of novel neutron optics components, and the realization of neutron Airy-vortex beams.
fields
hep-ph 1years
2024 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
-
Angular momentum effects in neutron decay
The decay of structured neutrons is an incoherent sum of plane-wave decays, and the proton angular distribution inherits the neutron state's geometry, including a forward dip for vortex neutrons and discrete rotational symmetries for spin-orbit states.