Gravitational Microlensing Near Caustics I: Folds
arXiv:astro-ph/0112531 · doi:10.1086/341063
Abstract
We study the local behavior of gravitational lensing near fold catastrophes. Using a generic form for the lensing map near a fold, we determine the observable properties of the lensed images, focusing on the case when the individual images are unresolved, i.e., microlensing. Allowing for images not associated with the fold, we derive analytic expressions for the photometric and astrometric behavior near a generic fold caustic. We show how this form reduces to the more familiar linear caustic, which lenses a nearby source into two images which have equal magnification, opposite parity, and are equidistant from the critical curve. In this case, the simplicity and high degree of symmetry allows for the derivation of semi-analytic expressions for the photometric and astrometric deviations in the presence of finite sources with arbitrary surface brightness profiles. We use our results to derive some basic properties of astrometric microlensing near folds, in particular we predict for finite sources with uniform and limb darkening profiles, the detailed shape of the astrometric curve as the source crosses a fold. We find that the astrometric effects of limb darkening will be difficult to detect with the currently planned accuracy of the Space Interferometry Mission. We verify our results by numerically calculating the expected astrometric shift for the photometrically well-covered Galactic binary lensing event OGLE-1999-BUL-23, finding excellent agreement with our analytic expressions. Our results can be applied to any lensing system with fold caustics, including Galactic binary lenses and quasar microlensing.
37 pages, 7 figures. Revised version includes an expanded discussion of applications. Accepted to ApJ, to appear in the August 1, 2002 issue (v574)
References in corpus (2)
Cited by in corpus (32)
- Quasar Microlensing at High Magnification and the Role of Dark Matter: Enhanced Fluctuations and Suppressed Saddlepoints
- Extended-Source Effect and Chromaticity in Two-Point-Mass Microlensing
- Gravitational lens under perturbations: Symmetry of perturbing potentials with invariant caustics
- Identifying Lenses with Small-Scale Structure. II. Fold Lenses
- What does strong gravitational lensing? The mass and redshift distribution of high-magnification lenses
- Formalism for testing theories of gravity using lensing by compact objects. II: Probing Post-Post-Newtonian metrics
- The signature of substructure on gravitational lensing in the LCDM cosmological model
- Formalism for testing theories of gravity using lensing by compact objects. III: Braneworld gravity
- Diffraction of electromagnetic waves in the gravitational field of the Sun
- The nature and size of the optical continuum source in QSO 2237+0305
- On Relativistic Corrections to Microlensing Effects: Applications to the Galactic Black Hole
- Multipole Models of Four-Image Gravitational Lenses with Anomalous Flux Ratios
- An alternative parameterisation for binary-lens caustic-crossing events
- Probing Structures of Distant Extrasolar Planets with Microlensing
- Speeding up low-mass planetary microlensing simulations and modelling: the Caustic Region Of INfluence
- Gravitational Microlensing Near Caustics II: Cusps
- Photometric, Astrometric and Polarimetric observations of gravitational microlensing events
- Resolving the Inner Structure of QSO Discs by Fold Caustic Crossing Events
- Microlensing flux ratio predictions for Euclid
- Analytic Relations for Magnifications and Time Delays in Gravitational Lenses with Fold and Cusp Configurations
- The complete catalogue of light curves in equal-mass binary microlensing
- Asymptotic Expansions and Amplification of a Gravitational Lens Near a Fold Caustic
- Liverpool-Maidanak monitoring of the Einstein Cross in 20062019. I. Light curves in the optical bands and microlensing signatures
- Even simpler modeling of quadruply lensed quasars (and random quartets) using Witt's hyperbola
- Gravitational lensing by an extended mass distribution
- OGLE-2009-BLG-023/MOA-2009-BLG-028: Characterization of a Binary Microlensing Event Based on Survey Data
- Diffraction around caustics in gravitational wave lensing
- Magnifications of paired micro-images emerging from a micro-lensing critical curve
- The Importance of Binary Gravitational Microlensing Events Through High-Magnification Channel
- Polarization in caustic-crossing binary microlensing events
- Angular Radii of Stars via Microlensing
- Basic Elements of Strong Gravitational Lensing