Radiation-Reaction Force on a Small Charged Body to Second Order
arXiv:1711.05212 · doi:10.1103/PhysRevD.97.105001
Abstract
In classical electrodynamics, an accelerating charged body emits radiation and experiences a corresponding radiation-reaction force, or self force. We extend to higher order in the total charge a previous rigorous derivation of the electromagnetic self force in flat spacetime by Gralla, Harte, and Wald. The method introduced by Gralla, Harte, and Wald computes the self force from the Maxwell field equations and conservation of stress-energy in a limit where the charge, size, and mass of the body go to zero, and does not require regularization of a singular self field. For our higher order computation, an adjustment of the definition of the mass of the body is necessary to avoid including self energy from the electromagnetic field sourced by the body in the distant past. We derive the evolution equations for the mass, spin, and center-of-mass position of the body through second order. We derive, for the first time, the second-order acceleration dependence of the evolution of the spin (self torque), as well as a mixing between the extended body effects and the acceleration dependent effects on the overall body motion.
31 pages, 2 figures
References in corpus (7)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- A Rigorous Derivation of Electromagnetic Self-force
- Completion of metric reconstruction for a particle orbiting a Kerr black hole
- The dynamics of a charged particle
- Second-order gravitational self-force
- A conservative effect of the second-order gravitational self-force on quasicircular orbits in Schwarzschild spacetime
- Self-force gravitational waveforms for extreme and intermediate mass ratio inspirals. III: Spin-orbit coupling revisited
Cited by in corpus (9)
- Black holes, gravitational waves and fundamental physics: a roadmap
- Self-force and radiation reaction in general relativity
- The Radiative Double Copy for Einstein-Yang-Mills Theory
- Repeated faint quasinormal bursts in extreme-mass-ratio inspiral waveforms: Evidence from frequency-domain scalar self-force calculations on generic Kerr orbits
- Self-forces in arbitrary dimensions
- Foundations of the self-force problem in arbitrary dimensions
- Gravitational Burst Radiation from Pulsars in the Galactic centre and stellar clusters
- Astrophysics with the Laser Interferometer Space Antenna
- Modified Gravity Corrections in Fundamental Orbital Frequencies in Kerr Spacetime