Compton scattering of photons off nucleons provides a unique probe of the electromagnetic structure of protons and neutrons. In the low-energy regime, the nucleon’s response to an applied ...
When the American physicist Arthur Compton discovered that light waves behave like particles in 1922, and could knock electrons out of atoms during an impact experiment, it was a milestone for quantum ...
Researchers from Skoltech, MEPhI, and the Dukhov All-Russian Research Institute of Automation have proposed a new method to create compact gamma-ray sources that are simultaneously brighter, sharper, ...
Particle physicists in the US have gained new insights into what happens when a high-energy photon scatters inelastically off a proton. According to perturbative quantum chromodynamics, the momentum ...
An international team of researchers has developed a new high-resolution x-ray Compton scattering method to visualize the perturbation of redox orbitals in energy-storage materials. The new ...
Schematics of the all-optical nonlinear Compton scattering experiment showing laser-driven electron acceleration, electron-laser collision, and Compton scattering to produce gamma rays. In a ...
THE infra-red catastrophe in the higher-order radiative corrections to electron scattering has been well known and shown to disappear when the virtual processes are considered along with the real ...
Light can be used to knock electrons out of atoms, with light particles and electrons bouncing off each other like two billiard balls - Compton scattering. Why electrons can even be ejected from an ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results