Aspects of electromagnetic radiation reaction in strong fields
arXiv:1409.7707 · doi:10.1080/00107514.2014.886840
Abstract
With the recent advances in laser technology, experimental investigation of radiation reaction phenomena is at last becoming a realistic prospect. A pedagogical introduction to electromagnetic radiation reaction is given with the emphasis on matter driven by ultra-intense lasers. Single-particle, multi-particle, classical and quantum aspects are all addressed.
17 pages, 1 figure. Invited article
References in corpus (7)
- Prolific pair production with high-power lasers
- Quantum radiation reaction effects in multiphoton Compton scattering
- Quantum radiation reaction in laser-electron beam collisions
- Strong signatures of radiation reaction below the radiation dominated regime
- A Rigorous Derivation of Electromagnetic Self-force
- Effects of Radiation-Reaction in Relativistic Laser Acceleration
- A Lorentz and gauge invariant measure of laser intensity
Cited by in corpus (11)
- Longitudinal and transverse cooling of relativistic electron beams in intense laser pulses
- Back-reaction on background fields: a coherent state approach
- Focussing effects in laser-electron Thomson scattering
- Radiation Reaction near the Classical Limit in Aligned Crystals
- Radiation reaction and limiting acceleration
- Stern-Gerlach surfing in laser wakefield accelerators
- Cooling of relativistic electron beams in chirped laser pulses
- Particle acceleration and radiation reaction in strong spherical electromagnetic waves
- Radiation reaction and the acceleration-dependent mass increase of a charged sphere undergoing uniform acceleration
- Non-perturbative aspects of particle acceleration in non-linear electrodynamics
- Self-force on a charged particle in an external scalar field