Supercontinuum and ultra-short pulse generation from nonlinear Thomson and Compton scattering
arXiv:1311.4872 · doi:10.1103/PhysRevA.89.032125
Abstract
Nonlinear Thomson and Compton processes, in which energetic electrons collide with an intense optical pulse, are investigated in the framework of classical and quantum electrodynamics. Spectral modulations of the emitted radiation, appearing as either oscillatory or pulsating structures, are observed and explained. It is shown that both processes generate a bandwidth radiation spanning the range of few MeV, which occurs in a small cone along the propagation direction of the colliding electrons. Most importantly, these broad bandwidth structures are temporarily coherent which proves that Thomson and Compton processes lead to generation of a supercontinuum. It is demonstrated that the radiation from the supercontinuum can be synthesized into zeptosecond (possibly even yoctosecond) pulses. Thus, confirming that Thomson and Compton scattering can be used as novel sources of an ultra-short radiation, opening routes to new physical domains for strong laser physics.
10 pages, 11 figures
References in corpus (9)
- Femtosecond x rays from laser-plasma accelerators
- All-optical Compton gamma-ray source
- Nonlinear Compton scattering in ultra-short laser pulses
- Non-Linear Compton Scattering of Ultrashort and Ultraintense Laser Pulses
- Compton Process in Intense Short Laser Pulses
- Breit-Wheeler Process in Intense Short Laser Pulses
- Nonlinear double Compton scattering in the full quantum regime
- Spectral Bandwidth Reduction of Thomson Scattered Light by Pulse Chirping
- Few-Cycle Pulse Generation in an X-Ray Free-Electron Laser
Cited by in corpus (24)
- Advances in QED with intense background fields
- Implementing nonlinear Compton scattering beyond the local constant field approximation
- High-energy behavior of strong-field QED in an intense plane wave
- Narrowband inverse Compton scattering x-ray sources at high laser intensities
- First-order strong-field QED processes in a tightly focused laser beam
- From local to nonlocal: higher fidelity simulations of photon emission in intense laser pulses
- Transformation of a single photon field into bunches of pulses
- Analytical tools for investigating strong-field QED processes in tightly focused laser fields
- Unveiling the transverse formation length of nonlinear Compton scattering
- Global phase and frequency comb structures in nonlinear Compton and Thomson scattering
- One-loop vertex correction in a plane wave
- On the completeness and orthonormality of the Volkov states and the Volkov propagator in configuration space
- WKB Electron Wave Functions in a Tightly Focused Laser Beam
- Frequency scaling law for nonlinear Compton and Thomson scattering: Relevance of spin and polarization effects
- First-order strong-field QED processes including the damping of particles states
- Laser pulse-length effects in trident pair production
- Supercontinuum in ionization by relativistically intense and short laser pulses: ionization without interference and its time analysis
- Generation of electron vortex states in ionization by intense and short laser pulses
- Generalized Klein-Nishina formula
- Nonlinear Compton scattering and nonlinear Breit-Wheeler pair production including the damping of particle states
- The electron mass shift in an intense plane wave
- The impact of the quantized transverse motion on radiation emission in a Dirac harmonic oscillator
- Quasiclassical representation of the Volkov propagator and the tadpole diagram in a plane wave
- Generation of attosecond electron beams in relativistic ionization by short laser pulses