4.6 Article

THE WATER VAPOR SPECTRUM OF APM 08279+5255: X-RAY HEATING AND INFRARED PUMPING OVER HUNDREDS OF PARSECS

期刊

ASTROPHYSICAL JOURNAL LETTERS
卷 741, 期 2, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/2041-8205/741/2/L37

关键词

galaxies: active; instrumentation: spectrographs; ISM: molecules; quasars: emission lines

资金

  1. NASA SARA [NAGS-11911, NAGS-12788]
  2. NSF AST [0807990]
  3. NSF [AST-0239270]
  4. Research Corporation [RI0928]
  5. Caltech Millikan and JPL Director's fellowships
  6. NRAO
  7. NASA GSRP
  8. NSF GSRP
  9. National Aeronautics and Space Administration
  10. Direct For Mathematical & Physical Scien
  11. Division Of Astronomical Sciences [838261, 0807990] Funding Source: National Science Foundation

向作者/读者索取更多资源

We present the rest-frame 200-320 mu m spectrum of the z = 3.91 quasar APM 08279+5255, obtained with Z-Spec at the Caltech Submillimeter Observatory. In addition to the J = 8 -> 7 to J = 13 -> 12 CO rotational transitions which dominate the CO cooling, we find six transitions of water originating at energy levels ranging up to 643 K. Most are first detections at high redshift, and we have confirmed one transition with CARMA. The CO cooling is well described by our X-ray dominated region (XDR) model, assuming L1-100 keV similar to 1 x 10(46) erg s(-1), and that the gas is distributed over a 550-pc size scale, as per the now-favored mu = 4 lensing model. The total observed cooling in water corresponds to 6.5 x 10(9) L-circle dot, comparable to that of CO. We compare the water spectrum with that of Mrk 231, finding that the intensity ratios among the high-lying lines are similar, but with a total luminosity scaled up by a factor of similar to 50. Using this scaling, we estimate an average water abundance relative to H-2 of 1.4 x 10(-7), a good match to the prediction of the chemical network in the XDR model. As with Mrk 231, the high-lying water transitions are excited radiatively via absorption in the rest-frame far-infrared, and we show that the powerful dust continuum in APM 08279+5255 is more than sufficient to pump this massive reservoir of warm water vapor.

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