4.6 Article

EVIDENCE FOR CO SHOCK EXCITATION IN NGC 6240 FROM HERSCHEL SPIRE SPECTROSCOPY

期刊

ASTROPHYSICAL JOURNAL LETTERS
卷 762, 期 2, 页码 -

出版社

IOP Publishing Ltd
DOI: 10.1088/2041-8205/762/2/L16

关键词

galaxies: active; galaxies: individual (NGC 6240); galaxies: nuclei; galaxies: starburst; infrared: galaxies

资金

  1. CSA in Canada
  2. NAOC in China
  3. CNES in France
  4. CNRS in France
  5. CEA in France
  6. ASI in Italy
  7. MEC in Spain
  8. Stockholm Observatory in Sweden
  9. STFC in the UK
  10. NASA in the USA
  11. ESA
  12. NHSC
  13. US ONR

向作者/读者索取更多资源

We present Herschel SPIRE FTS spectroscopy of the nearby luminous infrared galaxy NGC 6240. In total 20 lines are detected, including CO J = 4-3 through J = 13-12, 6 H2O rotational lines, and [C I] and [N II] fine-structure lines. The CO to continuum luminosity ratio is 10 times higher in NGC 6240 than Mrk 231. Although the CO ladders of NGC 6240 and Mrk 231 are very similar, UV and/or X-ray irradiation are unlikely to be responsible for the excitation of the gas in NGC 6240. We applied both C and J shock models to the H-2 v = 1-0 S(1) and v = 2-1 S(1) lines and the CO rotational ladder. The CO ladder is best reproduced by a model with shock velocity v(s) = 10 km s(-1) and a pre-shock density n(H) = 5 x 10(4) cm(-3). We find that the solution best fitting the H-2 lines is degenerate. The shock velocities and number densities range between v(s) = 17-47 km s(-1) and n(H) = 10(7)-5x10(4) cm(-3), respectively. The H-2 lines thus need a much more powerful shock than the CO lines. We deduce that most of the gas is currently moderately stirred up by slow (10 km s(-1)) shocks while only a small fraction (less than or similar to 1%) of the interstellar medium is exposed to the high-velocity shocks. This implies that the gas is rapidly losing its highly turbulent motions. We argue that a high CO line-to-continuum ratio is a key diagnostic for the presence of shocks.

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