Are there sextuplet and octuplet image systems?
arXiv:astro-ph/0108374 · doi:10.1046/j.1365-8711.2001.04826.x
Abstract
We study gravitational lensing by the family of scale-free galaxies with flat rotation curves. The models are defined by a shape function, which prescribes the radius of the isophote as a function of position angle from the major axis. The critical curves are analytic, while the caustic network is reducible to a simple quadrature. The cusps are always located at the turning points of the shape function. We show that the models with exactly elliptic isophotes never admit butterfly or swallowtail cusps and so have at most 4 (or 5) images. Higher order imaging is brought about by deviations of the isophotes from pure ellipses -- such as pointedness caused by embedded disks or boxiness caused by recent merging. The criteria for the onset of sextuple and octuple imaging can be calculated analytically in terms of the ellipticity and the fourth-order Fourier coefficients (a_4 and b_4) used by observers to parametrise the isophote shapes. The 6 or 8 images are arranged roughly in a circle, which appears as an incomplete Einstein ring if inadequately resolved. Using data on the shapes of elliptical galaxies and merger remnants, we estimate that 1% of all multiply imaged quasars may be sextuplet systems or higher. Forthcoming satellites like the Global Astrometric Interferometer for Astrophysics (GAIA) will provide datasets of roughly 4000 multiply imaged systems, and so about 40 will show sextuple imaging or higher.
10 pages, 9 figures, MNRAS (in press)
References in corpus (2)
Cited by in corpus (30)
- Tests for Substructure in Gravitational Lenses
- Identifying Lenses with Small-Scale Structure. I. Cusp Lenses
- The Cosmic Horseshoe: Discovery of an Einstein Ring around a Giant Luminous Red Galaxy
- Fitting Gravitational Lenses: Truth or Delusion
- Identifying Lenses with Small-Scale Structure. II. Fold Lenses
- Super-resolving distant galaxies with gravitational telescopes: Keck-LGSAO and Hubble imaging of the lens system SDSSJ0737+3216
- Search for strongly lensed counterpart images of binary black hole mergers in the first two LIGO observing runs
- Degeneracies and scaling relations in general power-law models for gravitational lenses
- Isophotal Shapes of Elliptical/S0 Galaxies from the Sloan Digital Sky Survey
- The Einstein Cross: constraint on dark matter from stellar dynamics and gravitational lensing
- SDSSJ2222+2745 A Gravitationally Lensed Sextuple Quasar with Maximum Image Separation of 15.1" Discovered in the Sloan Giant Arcs Survey
- Multipole Models of Four-Image Gravitational Lenses with Anomalous Flux Ratios
- Halo Structures of Gravitational Lens Galaxies
- An Atlas of Predicted Exotic Gravitational Lenses
- The Lens Galaxy In PG1115+080 is an Ellipse
- Mathematics of Gravitational Lensing: Multiple Imaging and Magnification
- The Quintuple Quasar: Mass Models and Interpretation
- Compound lensing: Einstein Zig-Zags and high multiplicity lensed images
- J17218842: a gravitationally lensed binary quasar with a proximate damped Lyman- absorber
- Smoothing Algorithms and High-order Singularities in Gravitational Lensing
- Complex angular structure of three elliptical galaxies from high-resolution ALMA observations of strong gravitational lenses
- Strong Lensing by Binary Galaxies Modelled as Isothermal Spheres
- Multipole Gravitational Lensing and High-order Perturbations on the Quadrupole Lens
- The Milky Way Galaxy as a Strong Gravitational Lens
- An optical n-body gravitational lens analogy
- A Universal Magnification Theorem II. Generic Caustics up to Codimension Five
- Elliptical multipoles for gravitational lenses
- Cusp Summations and Cusp Relations of Simple Quad Lenses
- Analytical Solutions of Singular Isothermal Quadrupole Lens
- A Forward, Analytic, Differentiable, Geometric (But Inflexible) Lens Model