Chandra Observations of the Gravitationally Lensed System 2016+112
arXiv:astro-ph/0101019 · doi:10.1086/319632
Abstract
An observation of the gravitationally lensed system 2016+112 with the Chandra X-ray Observatory has resolved a mystery regarding the proposed presence of a dark matter object in the lens plane of this system. The Chandra ACIS observation has clearly detected the lensed images of 2016+112 with positions in good agreement with those reported in the optical and also detects 13 additional X-ray sources within a radius of 3.5 arcmin. Previous X-ray observations in the direction of 2016+112 with the ROSAT HRI and ASCA SIS have interpreted the X-ray data as arising from extended emission from a dark cluster. However, the present Chandra observation can account for all the X-ray emission as originating from the lensed images and additional point X-ray sources in the field. Thus cluster parameters based on previous X-ray observations are unreliable. We estimate an upper limit on the mass-to-light ratio within a radius of 800 h_(50)^(-1) kpc of M/L_(V) < 190 h_(50) (M/L_(V))_Sun. The lensed object is quite unusual, with reported narrow emission lines in the optical that suggest it may be a type-2 quasar (Yamada et. al. 1999). Our modeling of the X-ray spectrum of the lensed object implies that the column density of an intrinsic absorber must lie between 3 and 85 x 10^22 cm^-2 (3 sigma confidence level). The 2-10 keV luminosity of the lensed object, corrected for the lens magnification effect and using the above range of intrinsic absorption, is 3 x 10^43 - 1.4 x 10^44 erg/s.
9 pages, includes 2 figures, Accepted for publication in ApJL
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- The Lx-T Relation and Temperature Function for Nearby Clusters Revisited
- High resolution optical and near-IR imaging of the quadruple quasar RX J0911.4+0551
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Cited by in corpus (12)
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- The stellar velocity dispersion of the lens galaxy in MG2016+112 at z=1.004
- A uniform X-ray analysis of 79 distant galaxy clusters with ROSAT and ASCA
- The role of luminous substructure in the gravitational lens system MG 2016+112
- Chandra Observations of the QSO Pair Q2345+007: Binary Quasar or Massive Dark Lens?
- The galaxy population of the z=1 cluster of galaxies MG2016+112
- Proper motion in lensed radio jets at redshift 3: a possible dual super-massive black hole system in the early Universe
- ROSAT Blank Field Sources I: Sample Selection and Archival Data
- Resolving Complex Inner X-ray Structure of the Gravitationaly Lensed AGN MGB2016+112
- Milliarcsecond X-ray astrometry to resolve inner regions of AGN at using gravitational lensing
- Constraining new fundamental physics with multiwavelength astrometry