Pinpointing the massive black hole in the Galactic Center with gravitationally lensed stars
arXiv:astro-ph/0102055 · doi:10.1086/320680
Abstract
A new statistical method for pinpointing the massive black hole (BH) in the Galactic Center on the IR grid is presented and applied to astrometric IR observations of stars close to the BH. This is of interest for measuring the IR emission from the BH, in order to constrain accretion models; for solving the orbits of stars near the BH, in order to measure the BH mass and to search for general relativistic effects; and for detecting the fluctuations of the BH away from the dynamical center of the stellar cluster, in order to study the stellar potential. The BH lies on the line connecting the two images of any background source it gravitationally lenses, and so the intersection of these lines fixes its position. A combined search for a lensing signal and for the BH shows that the most likely point of intersection coincides with the center of acceleration of stars orbiting the BH. This statistical detection of lensing by the BH has a random probability of ~0.01. It can be verified by deep IR stellar spectroscopy, which will determine whether the most likely lensed image pair candidates (listed here) have identical spectra.
4 pages, 2 figures, submitted to ApJL
References in corpus (1)
Cited by in corpus (8)
- Gravitational Lensing by Black Holes
- Stellar Processes Near the Massive Black Hole in the Galactic Center
- The structure of the nuclear stellar cluster of the Milky Way
- Stellar Dynamics and Stellar Phenomena Near A Massive Black Hole
- What is limiting near-infrared astrometry in the Galactic Center?
- On Relativistic Corrections to Microlensing Effects: Applications to the Galactic Black Hole
- Gravitational Lensing of stars in the central arcsecond of our Galaxy
- The infrared L'-band view of the Galactic Center with NAOS-CONICA at VLT