Observing gravitational lensing effects by Sgr A* with GRAVITY
arXiv:1204.2103 · doi:10.1088/0004-637X/753/1/56
Abstract
The massive black hole at the Galactic center Sgr A* is surrounded by a cluster of stars orbiting around it. Light from these stars is bent by the gravitational field of the black hole, giving rise to several phenomena: astrometric displacement of the primary image, the creation of a secondary image that may shift the centroid of Sgr A*, magnification effects on both images. The near-to-come second generation VLTI instrument GRAVITY will perform observations in the Near Infrared of the Galactic Center at unprecedented resolution, opening the possibility of observing such effects. Here we investigate the observability limits for GRAVITY of gravitational lensing effects on the S-stars in the parameter space [DLS,gamma,K], where DLS is the distance between the lens and the source, gamma is the alignment angle of the source, and K is the source apparent magnitude in the K-band. The easiest effect to be observed in the next years is the astrometric displacement of primary images. In particular the shift of the star S17 from its Keplerian orbit will be detected as soon as GRAVITY becomes operative. For exceptional configurations it will be possible to detect effects related to the spin of the black hole or Post-Newtonian orders in the deflection.
29 pages, 9 figures, in press on ApJ
References in corpus (4)
- A comparison of approximate gravitational lens equations and a proposal for an improved new one
- Formalism for testing theories of gravity using lensing by compact objects. III: Braneworld gravity
- Spherical Boson Stars as Black Hole mimickers
- Primary caustics and critical points behind a Kerr black hole
Cited by in corpus (33)
- Born-Infeld inspired modifications of gravity
- Can we distinguish between black holes and wormholes by their Einstein-ring systems?
- Sgr A* and General Relativity
- Strong gravitational lensing --- A probe for extra dimensions and Kalb-Ramond field
- Light curves of light rays passing through a wormhole
- Testing the No-Hair Theorem with Observations of Black Holes in the Electromagnetic Spectrum
- Black hole solution and strong gravitational lensing in Eddington-inspired Born-Infeld gravity
- Strong field limit analysis of gravitational lensing in Kerr-Taub-NUT spacetime
- General relativistic effects on the orbit of the S2 star with GRAVITY
- Strong gravitational lensing by an electrically charged black hole in Eddington-inspired Born-Infeld gravity
- Constraining some Horndeski gravity theories
- Gravitational lensing in Tangherlini spacetime in the weak gravitational field and the strong gravitational field
- Wormhole supported by dark energy admitting conformal motion
- Gravitational lensing of a Schwarzschild-like black hole in Kalb-Ramond gravity
- What stellar orbit is needed to measure the spin of the Galactic center black hole from astrometric data?
- Strong field lensing by Damour-Solodukhin wormhole
- Do electromagnetic waves always propagate along null geodesics?
- Gravitational Lensing - Einstein's Unfinished Symphony
- The Galactic Center as a laboratory for theories of gravity and dark matter
- Pulsar timing in extreme mass ratio binaries: a general relativistic approach
- Gravitational lens effect of a holonomy corrected Schwarzschild black hole
- Astrophysical Signatures of Black holes in Generalized Proca Theories
- Null geodesics and gravitational lensing in a nonsingular spacetime
- Can massless wormholes mimic a Schwarzschild black hole in the strong field lensing?
- Gravitational Lensing in Kerr-Newman Anti de Sitter Spacetime
- Strong Gravitational Lensing of Quasi-Kerr Compact Object with Arbitrary Quadrupole Moments
- Testing the validity of the ray-tracing code GYOTO
- Vacuum Brans-Dicke theory in the Jordan and Einstein frames: can they be distinguished by lensing?
- The impact of gravitational lensing in the reconstruction of stellar orbits around Sgr A*
- Stars lensed by the supermassive black hole in the center of the Milky Way: predictions for ELT, TMT, GMT, and JWST
- Analytic Post-Newtonian Astrometric and Spectroscopic Models of Orbits around Black Holes
- Constraints on the -parameter for the vacuum solution of Cotton gravity with geodesics and shadows
- PPN--spin degeneracies in mock S62-like stellar-orbit inference