Strong lensing, plane gravitational waves and transient flashes
arXiv:1210.1449 · doi:10.1088/0264-9381/30/7/075011
Abstract
Plane-symmetric gravitational waves are considered as gravitational lenses. Numbers of images, frequency shifts, mutual angles, and image distortion parameters are computed exactly in essentially all non-singular plane wave spacetimes. For a fixed observation event in a particular plane wave spacetime, the number of images is found to be the same for almost every source. This number can be any positive integer, including infinity. Wavepackets of finite width are discussed in detail as well as waves which maintain a constant amplitude for all time. Short wavepackets are found to generically produce up to two images of each source which appear (separately) only some time after the wave has passed. They are initially infinitely bright, infinitely blueshifted images of the infinitely distant past. Later, these images become dim and acquire a rapidly-increasing redshift. For sufficiently weak wavepackets, one such "flash" almost always exists. The appearance of a second flash requires that the Ricci tensor inside the wave exceed a certain threshold. This might occur if a gravitational plane wave is sourced by, e.g., a sufficiently strong electromagnetic plane wave.
32 pages, 8 figures, fixed typos and slightly added to some explanations
References in corpus (3)
Cited by in corpus (23)
- The Memory Effect for Plane Gravitational Waves
- Soft Gravitons & the Memory Effect for Plane Gravitational Waves
- Velocity Memory Effect for Polarized Gravitational Waves
- Cylindrical Systems in General Relativity
- Memory Effect for Impulsive Gravitational Waves
- Memory, Penrose Limits and the Geometry of Gravitational Shockwaves and Gyratons
- Optics in a nonlinear gravitational plane wave
- Persistent gravitational wave observables: Nonlinear plane wave spacetimes
- Tails of plane wave spacetimes: Wave-wave scattering in general relativity
- Memory effect, conformal symmetry and gravitational plane waves
- Geodesic congruences in exact plane wave spacetimes and the memory effect
- The First-Order Velocity Memory Effect from Compact Binary Coalescing Sources
- Large Gauge Effects and the Structure of Amplitudes
- From polarized gravitational waves to analytically solvable electromagnetic beams
- Niederer's transformation, time-dependent oscillators and polarized gravitational waves
- Persistent gravitational wave observables: Nonlinearities in (non-)geodesic deviation
- Singularities of plane gravitational waves and their memory effects
- A New Twist on the Geometry of Gravitational Plane Waves
- Gravitational wave memory and its effects on particles and fields
- Gravitational waves in gauge theory gravity with a negative cosmological constant
- Dynamics, quantum states and Compton scattering in nonlinear gravitational waves
- f(R) Gravity, relic coherent gravitons and optical chaos
- Interaction of exact gravitational waves with matter