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Superwind evolution: the young starburst-driven wind galaxy NGC 2782
by
Bravo-Guerrero, Jimena
, Stevens, Ian R
in
Active galactic nuclei
/ Alpha rays
/ Emission
/ Filaments
/ Galactic evolution
/ Galaxies
/ Luminosity
/ Point sources
/ Radio sources (astronomy)
/ Starburst galaxies
/ X ray sources
2017
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Superwind evolution: the young starburst-driven wind galaxy NGC 2782
by
Bravo-Guerrero, Jimena
, Stevens, Ian R
in
Active galactic nuclei
/ Alpha rays
/ Emission
/ Filaments
/ Galactic evolution
/ Galaxies
/ Luminosity
/ Point sources
/ Radio sources (astronomy)
/ Starburst galaxies
/ X ray sources
2017
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Superwind evolution: the young starburst-driven wind galaxy NGC 2782
by
Bravo-Guerrero, Jimena
, Stevens, Ian R
in
Active galactic nuclei
/ Alpha rays
/ Emission
/ Filaments
/ Galactic evolution
/ Galaxies
/ Luminosity
/ Point sources
/ Radio sources (astronomy)
/ Starburst galaxies
/ X ray sources
2017
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Superwind evolution: the young starburst-driven wind galaxy NGC 2782
Paper
Superwind evolution: the young starburst-driven wind galaxy NGC 2782
2017
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Overview
We present results from a 30 ksec Chandra observation of the important starburst galaxy NGC 2782, covering the 0.3-10keV energy band. We find evidence of a superwind of small extent, that is likely in an early stage of development. We find a total of 27 X-ray point sources within a region of radius 2\\(D_{25}\\) of the galaxy centre and which are likely associated with the galaxy. Of these, 13 are ULXs (\\(L_{X}\\geq 10^{39}~ erg s ^{-1}\\)) and a number have likely counterparts. The X-ray luminosities of the ULX candidates are \\(1.2-3.9\\times10^{39}~ erg s ^{-1}\\). NGC2782 seems to have an unusually large number of ULXs. Central diffuse X-ray emission extending to ~ 3kpc from the nuclear region has been detected. We also find an X-ray structure to the south of the nucleus, coincident with H{\\alpha} filaments and with a 5 GHz radio source. We interpret this as a blow-out region of a forming superwind. This X-ray bubble has a total luminosity (0.3-10 keV) of \\(5\\times10^{39}erg s ^{-1}\\) (around \\(15\\%\\) of the total luminosity of the extended emission), and an inferred wind mass of \\(1.5\\times10^{6}\\) M\\(_\\odot\\). We also discuss the nature of the central X-ray source in NGC2782, and conclude that it is likely a low-luminosity AGN (LLAGN), with a total X-ray luminosity of \\(L_{X}=6\\times10^{40}~erg s ^{-1}\\) with strong Fe line emission at 6.4 keV.
Publisher
Cornell University Library, arXiv.org
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