BAT AGN spectroscopic survey–II. X-ray emission and high-ionization optical emission lines

We investigate the relationship between X-ray and optical line emission in 340 nearby (z ≃ 0.04) AGN selected above 10 keV using Swift BAT. We find a weak correlation between the extinction corrected [O iii] and hard X-ray luminosity ( $L_{\left[{\rm O}\,\small {III}\right] }^{\text{int}} \propto L_...

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Published inMonthly notices of the Royal Astronomical Society Vol. 454; no. 4; pp. 3622 - 3634
Main Authors Berney, Simon, Koss, Michael, Trakhtenbrot, Benny, Ricci, Claudio, Lamperti, Isabella, Schawinski, Kevin, Baloković, Mislav, Crenshaw, D. Michael, Fischer, Travis, Gehrels, Neil, Harrison, Fiona, Hashimoto, Yasuhiro, Ichikawa, Kohei, Mushotzky, Richard, Oh, Kyuseok, Stern, Daniel, Treister, Ezequiel, Ueda, Yoshihiro, Veilleux, Sylvain, Winter, Lisa
Format Journal Article
LanguageEnglish
Published London Oxford University Press 21.12.2015
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Online AccessGet full text
ISSN0035-8711
1365-2966
DOI10.1093/mnras/stv2181

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Abstract We investigate the relationship between X-ray and optical line emission in 340 nearby (z ≃ 0.04) AGN selected above 10 keV using Swift BAT. We find a weak correlation between the extinction corrected [O iii] and hard X-ray luminosity ( $L_{\left[{\rm O}\,\small {III}\right] }^{\text{int}} \propto L_{14\text{--}195}$ ) with a large scatter (R Pear = 0.64, σ = 0.62 dex) and a similarly large scatter with the intrinsic 2–10 keV to [O iii] luminosities (R Pear = 0.63, σ = 0.63 dex). Correlations of the hard X-ray fluxes with the fluxes of high-ionization narrow lines ([O iii], He ii, [Ne iii] and [Ne v]) are not significantly better than with the low-ionization lines (H α, [S ii]). Factors like obscuration or physical slit size are not found to be a significant part of the large scatter. In contrast, the optical emission lines show much better correlations with each other (σ = 0.3 dex) than with the X-ray flux. The inherent large scatter questions the common usage of narrow emission lines as AGN bolometric luminosity indicators and suggests that other issues such as geometrical differences in the scattering of the ionized gas or long-term AGN variability are important.
AbstractList We investigate the relationship between X-ray and optical line emission in 340 nearby (z ≃ 0.04) AGN selected above 10 keV using Swift BAT. We find a weak correlation between the extinction corrected [O iii] and hard X-ray luminosity ( $L_{\left[{\rm O}\,\small {III}\right] }^{\text{int}} \propto L_{14\text{--}195}$ ) with a large scatter (R Pear = 0.64, σ = 0.62 dex) and a similarly large scatter with the intrinsic 2–10 keV to [O iii] luminosities (R Pear = 0.63, σ = 0.63 dex). Correlations of the hard X-ray fluxes with the fluxes of high-ionization narrow lines ([O iii], He ii, [Ne iii] and [Ne v]) are not significantly better than with the low-ionization lines (H α, [S ii]). Factors like obscuration or physical slit size are not found to be a significant part of the large scatter. In contrast, the optical emission lines show much better correlations with each other (σ = 0.3 dex) than with the X-ray flux. The inherent large scatter questions the common usage of narrow emission lines as AGN bolometric luminosity indicators and suggests that other issues such as geometrical differences in the scattering of the ionized gas or long-term AGN variability are important.
We investigate the relationship between X-ray and optical line emission in 340 nearby (z ... 0.04) AGN selected above 10 keV using Swift BAT. We find a weak correlation between the extinction corrected [Oiii] and hard X-ray luminosity (...) with a large scatter (R... = 0.64, s = 0.62 dex) and a similarly large scatter with the intrinsic 2-10 keV to [Oiii] luminosities (RPear = 0.63, s = 0.63 dex). Correlations of the hard X-ray fluxes with the fluxes of high-ionization narrow lines ([Oiii], Heii, [Neiii] and [Nev]) are not significantly better than with the low-ionization lines (H a, [Sii]). Factors like obscuration or physical slit size are not found to be a significant part of the large scatter. In contrast, the optical emission lines show much better correlations with each other (s = 0.3 dex) than with the X-ray flux. The inherent large scatter questions the common usage of narrow emission lines as AGN bolometric luminosity indicators and suggests that other issues such as geometrical differences in the scattering of the ionized gas or long-term AGN variability are important. (ProQuest: ... denotes formulae/symbols omitted.)
Author Trakhtenbrot, Benny
Gehrels, Neil
Lamperti, Isabella
Ichikawa, Kohei
Baloković, Mislav
Ricci, Claudio
Schawinski, Kevin
Crenshaw, D. Michael
Harrison, Fiona
Stern, Daniel
Berney, Simon
Hashimoto, Yasuhiro
Oh, Kyuseok
Winter, Lisa
Koss, Michael
Fischer, Travis
Mushotzky, Richard
Veilleux, Sylvain
Treister, Ezequiel
Ueda, Yoshihiro
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black hole physics
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SSID ssj0004326
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Snippet We investigate the relationship between X-ray and optical line emission in 340 nearby (z ≃ 0.04) AGN selected above 10 keV using Swift BAT. We find a weak...
We investigate the relationship between X-ray and optical line emission in 340 nearby (z ... 0.04) AGN selected above 10 keV using Swift BAT. We find a weak...
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SubjectTerms Correlation
Correlation analysis
Emission
Emission spectroscopy
Fluxes
Luminosity
Scatter
Slits
X rays
X-ray astronomy
Title BAT AGN spectroscopic survey–II. X-ray emission and high-ionization optical emission lines
URI https://www.proquest.com/docview/1736702590
https://www.proquest.com/docview/1906459946
https://www.proquest.com/docview/1915325343
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