4.7 Article

X-RAY MONITORING OF GRAVITATIONAL LENSES WITH CHANDRA

期刊

ASTROPHYSICAL JOURNAL
卷 755, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/755/1/24

关键词

accretion, accretion disks; black hole physics; gravitational lensing: micro; quasars: individual (QJ0158-4325, HE0435-1223, HE1104-1805, SDSS0924+0219, SDSS1004+4112, Q2237+0305)

资金

  1. NASA/SAO [GO0-11121A/B/C/D, GO1-12139A/B/C, GO2-13132A/B/C]
  2. National Science Foundation [AST-1009756, AST-0907848]
  3. Division Of Astronomical Sciences
  4. Direct For Mathematical & Physical Scien [1009756] Funding Source: National Science Foundation

向作者/读者索取更多资源

We present Chandra monitoring data for six gravitationally lensed quasars: QJ 0158-4325, HE 0435-1223, SDSS 0924+0219, SDSS 1004+4112, HE 1104-1805, andQ2237+0305. X-raymicrolensing variability is detected in all six lenses with high confidence. We furthermore detect energy-dependent microlensing in HE 0435-1223, SDSS 0924+0219, SDSS 1004+4112, and Q 2237+0305. Through a detailed spectral analysis for each lens we find that simple power-law models plus Gaussian emission lines give good fits to the spectra. We detect intrinsic spectral variability in two epochs of Q 2237+0305, and differential absorption between images in QJ 0158-4325 and Q2237+0305. We also detect the Fe K alpha emission line in all six lenses, and the Ni xxvii K alpha line in two images of Q 2237+0305. The rest-frame equivalent widths of the Fe K alpha lines are measured to be 0.4-1.2 keV, significantly higher than those measured in typical active galactic nuclei of similar X-ray luminosities. This suggests that the Fe K alpha emission region is more compact or centrally concentrated than the continuum emission region.

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