Coherent radiation of an ultra-relativistic charged particle channeled in a periodically bent crystal
arXiv:physics/0109039 · doi:10.1088/0954-3899/24/5/001
Abstract
We suggest a new type of the undulator radiation which is generated by an ultra-relativistic particle channeled along a periodically bent crystallographic plane or axis. The electromagnetic radiation arises mainly due to the bending of the particle's trajectory, which follows the shape of the channel. The parameters of this undulator, which totally define the spectrum and the angular distribution of the radiation (both spontaneous and stimulated), depend on the type of the crystal and the crystallographic plane (axis), on the type of a projectile and its energy, and on the shape of the bent channel, and, thus, can be varied significantly by varying these characteristics. As an example, we consider the acoustically induced radiation (AIR) which is generated by ultra-relativistic particles channeled in a crystal which is bent by a transverse acoustic wave. The AIR mechanism allows to make the undulator with the main parameters varying in wide ranges, which are inaccessible in the undulators based on the motion of particles in the periodic magnetic fields and also in the field of the laser radiation. The intensity of AIR can be easily made larger than the intensity of the radiation in a linear crystal and can be varied in a wide range by varying the frequency and the amplitude of the acoustic wave in the crystal. A possibility to generate stimulated emission of high-energy photons (in keV - MeV region) is also discussed.
published in J. Phys. G: Nucl. Part. Phys. 24 (1998) L45-L53, http://www.iop.org
Cited by in corpus (40)
- Simulation of Ultra-Relativistic Electrons and Positrons Channeling in Crystals with MBN Explorer
- Feasibility of an electron-based crystalline undulator
- Condensed Matter Systems Exposed to Radiation: Multiscale Theory, Simulations, and Experiment
- The influence of the dechanneling process on the photon emission by an ultra-relativistc positron channeling in a periodically bent crystal
- Crystalline Undulator with a Small Amplitude and a Short Period
- Crystal-based intensive gamma-ray light sources
- Planar Channeling of 855 MeV Electrons in Silicon: Monte-Carlo Simulations
- Total energy losses due to the radiation in an acoustically based undulator: the undulator and the channeling radiation included
- All-atom relativistic molecular dynamics simulations of channeling and radiation processes in oriented crystals
- Radiation from multi-GeV electrons and positrons in periodically bent silicon crystal
- Photon emission by ultra-relativistic positrons in crystalline undulators: the high-energy regime
- Photon emission by ultra-relativistic positrons in crystalline undulators: the high-energy regime
- Total spectrum of photon emission by an ultra-relativistic positron channeling in a periodically bent crystal
- Simulation of Channeling and Radiation of 855 MeV Electrons and Positrons in a Small-Amplitude Short-Period Bent Crystal
- Investigation on radiation generated by Sub-GeV electrons in ultrashort Si and Ge bent crystals
- Electron-based crystalline undulator
- Simulations of electron channeling in bent silicon crystal
- Channeling of electrons and positrons in straight and periodically bent diamond(110) crystals
- Channeling and radiation of the 855 MeV electrons enhanced by the re-channeling in a periodically bent diamond crystal
- The influence of the structure imperfectness of a crystalline undulator on the emission spectrum
- Sub-GeV Electron and Positron Channeling in Straight, Bent and Periodically Bent Silicon Crystals
- Stable propagation of a modulated positron beam in a bent crystal channel
- Atomistic modelling and characterizaion of light sources based on small-amplitude short-period periodically bent crystals
- Spontaneous and stimulated undulator radiation by an ultra-relativistic positron channeling in a periodically bent crystal
- Demodulation of a positron beam in a bent crystal channel
- Interplay and specific features of radiation mechanisms of electrons and positrons in crystalline undulators
- One-dimensional Model of a Gamma Klystron
- Recent Progress in the Theory of the Crystalline Undulator
- Dopant concentration effects on SiGe crystals for emerging light-source technologies: A molecular dynamics study
- Advances in multiscale modeling for novel and emerging technologies
- Optical transition radiation in presence of acoustic waves for an oblique incidence
- Possible generation of -ray laser by electrons wiggling in a background laser
- Channeling and Radiation of 855 MeV Electrons and Positrons in Straight and Bent Tungsten (110) Crystals
- Angular distribution of positrons in coherent pair production in deformed crystals
- Tunable Optical Radiation Formed in Crystalline Undulator
- Structural effects of boron doping in diamond crystals for gamma-ray light-source applications: Insights from molecular dynamics simulations
- Precise control of high-frequency ultrasounds in thin crystals for the development of tunable narrowband and directional gamma-ray sources
- Observation of Fine Structure in Channeling of Particles in Bent Crystals
- Comment on 'Simulation of ultra-relativistic electrons and positrons channeling in crystals with MBN Explorer'
- Influence of bending parameters on crystalline undulator radiation peak stability for 530 MeV positron channelling