4.7 Article

WEAK HARD X-RAY EMISSION FROM BROAD ABSORPTION LINE QUASARS: EVIDENCE FOR INTRINSIC X-RAY WEAKNESS

期刊

ASTROPHYSICAL JOURNAL
卷 794, 期 1, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/0004-637X/794/1/70

关键词

accretion, accretion disks; galaxies: active; galaxies: nuclei; quasars: absorption lines; quasars: emission lines; X-rays: galaxies

资金

  1. California Institute of Technology (Caltech) NuSTAR [44A-1092750]
  2. NASA ADP grant [NNX1OAC99G]
  3. NASA [NNG081-D60C]
  4. CONICYT-Chile FONDECYT [1140304, 1141218]
  5. EMBIGGEN Anillo [ACT1101]
  6. Basal-CATA [PFB-06/2007]
  7. Millennium Institute of Astrophysics (MAS) of Iniciativa Cientifica Milenio del Ministerio de Economia, Fomento y Turismo [IC120009]
  8. ASI/INAF [I/037/12/0-011/13]
  9. STFC [ST/J003697/1]
  10. Swiss National Science Foundation (NSF) [PP00P2 138979/1]
  11. STFC [ST/I001573/1, ST/L00075X/1, ST/J003697/2, ST/J003697/1] Funding Source: UKRI
  12. Science and Technology Facilities Council [ST/I001573/1, ST/J003697/2, ST/L00075X/1, ST/J003697/1] Funding Source: researchfish

向作者/读者索取更多资源

We report NuSTAR observations of a sample of six X-ray weak broad absorption line (BAL) quasars. These targets, at z = 0.148-1.223, are among the optically brightest and most luminous BAL quasars known at z < 1.3. However, their rest-frame approximate to 2 keV luminosities are 14 to >330 times weaker than expected for typical quasars. Our results from a pilot NuSTAR study of two low-redshift BAL quasars, a Chandra stacking analysis of a sample of highredshift BAL quasars, and a NuSTAR spectral analysis of the local BAL quasar Mrk 231 have already suggested the existence of intrinsically X-ray weak BAL quasars, i.e., quasars not emitting X-rays at the level expected from their optical/UV emission. The aim of the current program is to extend the search for such extraordinary objects. Three of the six new targets are weakly detected by NuSTAR with <= 45 counts in the 3-24 keV band, and the other three are not detected. The hard X-ray (8-24 keV) weakness observed by NuSTAR requires Compton-thick absorption if these objects have nominal underlying X-ray emission. However, a soft stacked effective photon index (Gamma(eff) approximate to 1.8) for this sample disfavors Compton-thick absorption in general. The uniform hard X-ray weakness observed by NuSTAR for this and the pilot samples selected with <10 keV weakness also suggests that the X-ray weakness is intrinsic in at least some of the targets. We conclude that the NuSTAR observations have likely discovered a significant population (>= 33%) of intrinsically X-ray weak objects among the BAL quasars with significantly weak <10 keV emission. We suggest that intrinsically X-ray weak quasars might be preferentially observed as BAL quasars.

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