Determining the Microlens Mass Function from Quasar Microlensing Statistics
arXiv:astro-ph/0008008 · doi:10.1046/j.1365-8711.2001.03917.x
Abstract
The first investigations of the response of the microlensing magnification pattern (at an optical depth of order unity) to the mass function of the microlenses found that the resulting statistics depend only on the mean microlens mass <m>. In particular the mean microlensing caustic crossing rate was found to be proportional to the squareroot of <m>. We show that while this is true in the limit of mass functions with a narrow range of mass, in general the magnification pattern shows structure that reflects the contribution to the optical depth of microlenses with different masses. We present a better approximation, relating the microlens mass function to light-curve statistics. We show that the variability statistics of quasar microlensing light-curves can (in principle) be inverted to obtain the mass function of the microlenses in the mass range over which the mass density remains comparable, ie. p(m)dm~C/m. A preliminary analysis of the structure function for Q2237+0305 suggests that there is not a significant contribution to the optical depth from very low mass objects (0.001 solar mass). However observations of multiple microlensed quasars for a period of ~20 years may in the future yield a detailed p(m)dm. In the mass range where the number density is comparable, ie. p(m)dm~const., the distribution of flux factors could be inverted to find the microlens mass function. This may be used as a probe of the abundance of planets with orbital radii >100 AU.
11 pages, 8 figures. Accepted for publication in MNRAS. Higher resolution figures are available from JSBW
References in corpus (7)
- The Sloan Digital Sky Survey: Technical Summary
- The Optical Gravitational Lensing Experiment. Monitoring of QSO 2237+0305
- The Optical Gravitational Lensing Experiment. A Hunt for Caustic Crossings in QSO 2237+0305
- A gravitational microlensing determination of continuum source size in Q2237+0305
- A small source in Q2237+0305 ?
- Limits on the microlens mass function of Q2237+0305
- Determination of the transverse velocity of Q2237+0305
Cited by in corpus (42)
- The Ensemble Photometric Variability of ~25000 Quasars in the Sloan Digital Sky Survey
- Quantitative Interpretation of Quasar Microlensing Light Curves
- The 6dF Galaxy Survey: Peculiar Velocity Field and Cosmography
- Microlensing variability in the gravitationally lensed quasar QSO 2237+0305 = the Einstein Cross. II. Energy profile of the accretion disk
- Variability in active galactic nuclei: confrontation of models with observations
- Dark matter under the microscope: Constraining compact dark matter with caustic crossing events
- The stellar and dark matter distributions in elliptical galaxies from the ensemble of strong gravitational lenses
- Observational signatures of microlensing in gravitational waves at LIGO/Virgo frequencies
- Limits on the Mass and Abundance of Primordial Black Holes from Quasar Gravitational Microlensing
- Uncovering the Intrinsic Variability of Gamma-ray Bursts
- Microlensing of Lensed Supernovae
- SN Refsdal : Photometry and Time Delay Measurements of the First Einstein Cross Supernova
- The Transverse Peculiar Velocity of the Q2237+0305 Lens Galaxy and the Mean Mass of Its Stars
- Caught in the Act; Chandra Observations of Microlensing of the Radio-Loud Quasar MG J0414+0534
- Qualitative aspects of quasar microlensing with two mass components: magnification patterns and probability distributions
- GERLUMPH Data Release 1: High-resolution cosmological microlensing magnification maps and eResearch tools
- Microlensing variability in time-delay quasars
- Microlensing of an extended source by a power-law mass distribution
- Consistent beta values from density-density and velocity-velocity comparisons
- A new parameter space study of cosmological microlensing
- Measuring accretion disk sizes of lensed quasars with microlensing time delay in multi-band light curves
- Lens modelling of the strongly lensed Type Ia supernova iPTF16geu
- Statistics of Microlensing Caustic Crossings in Q~2237+0305: Peculiar Velocity of the Lens Galaxy and Accretion Disk Size
- Smooth matter and source size in microlensing simulations of gravitationally lensed quasars
- A Quasar Microlensing Light Curve Generator for LSST
- An Improved GPU-Based Ray-Shooting Code For Gravitational Microlensing
- The Initial Mass Function of Lens Galaxies from Quasar Microlensing
- Quasar Microlensing: when compact masses mimic smooth matter
- Statistical Microlensing Toward Magnified High-Redshift Star Clusters
- Microlensing and the type Ia supernova iPTF16geu
- Results of optical monitoring of 5 SDSS double QSOs with the Nordic Optical Telescope
- Microlensing of Central Images in Strong Gravitational Lens Systems
- Diffuse emission in microlensed quasars and its implications for accretion-disk physics
- The Impact of the Mass Spectrum of Lenses in Quasar Microlensing Studies. Constraints on a Mixed Population of Primordial Black Holes and Stars
- Simulating time-varying strong lenses
- Microlensing induced absorption line variability
- Q2237+0305 in X-rays: spectra and variability with XMM-Newton
- The Water Maser in MG 0414+0534: The Influence of Gravitational Microlensing
- Free-floating "planets'' in the macrolensed quasar Q2237+0305
- Simulating quasar microlensing light curves: High magnification events
- A GPU Code for Finding Microlensing Critical Curves and Caustics
- Gravitational lensing of fast radio bursts: prospects for probing microlens populations in lensing galaxies