Two separate outflows in the dual supermassive black hole system NGC 6240
Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes (with separations of one to ten kiloparsecs), which eventually sink into the centre of the merger remnant, emit gravitational waves and coale...
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Published in | Nature (London) Vol. 556; no. 7701; pp. 345 - 348 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing Group UK
01.04.2018
Nature Publishing Group |
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Abstract | Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes (with separations of one to ten kiloparsecs), which eventually sink into the centre of the merger remnant, emit gravitational waves and coalesce. The merger also triggers star formation and supermassive black hole growth, and gas outflows regulate the stellar content
1
–
3
. Although this theoretical picture is supported by recent observations of starburst-driven and supermassive black hole-driven outflows
4
–
6
, it remains unclear how these outflows interact with the interstellar medium. Furthermore, the relative contributions of star formation and black hole activity to galactic feedback remain unknown
7
–
9
. Here we report observations of dual outflows in the central region of the prototypical merger NGC 6240. We find a black-hole-driven outflow of [O
iii
] to the northeast and a starburst-driven outflow of Hα to the northwest. The orientations and positions of the outflows allow us to isolate them spatially and study their properties independently. We estimate mass outflow rates of 10 and 75 solar masses per year for the Hα bubble and the [O
iii
] cone, respectively. Their combined mass outflow is comparable to the star formation rate
10
, suggesting that negative feedback on star formation is occurring.
Observations of NGC 6240 show two differently driven outflows of different gases with a combined outflow rate comparable to the star formation rate, suggesting possible negative feedback on star formation. |
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AbstractList | Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes (with separations of one to ten kiloparsecs), which eventually sink into the centre of the merger remnant, emit gravitational waves and coalesce. The merger also triggers star formation and supermassive black hole growth, and gas outflows regulate the stellar content.sup.1-3. Although this theoretical picture is supported by recent observations of starburst-driven and supermassive black hole-driven outflows.sup.4-6, it remains unclear how these outflows interact with the interstellar medium. Furthermore, the relative contributions of star formation and black hole activity to galactic feedback remain unknown.sup.7-9. Here we report observations of dual outflows in the central region of the prototypical merger NGC 6240. We find a black-hole-driven outflow of [O iii] to the northeast and a starburst-driven outflow of H[alpha] to the northwest. The orientations and positions of the outflows allow us to isolate them spatially and study their properties independently. We estimate mass outflow rates of 10 and 75 solar masses per year for the H[alpha] bubble and the [O iii] cone, respectively. Their combined mass outflow is comparable to the star formation rate.sup.10, suggesting that negative feedback on star formation is occurring.Observations of NGC 6240 show two differently driven outflows of different gases with a combined outflow rate comparable to the star formation rate, suggesting possible negative feedback on star formation. Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes (with separations of one to ten kiloparsecs), which eventually sink into the centre of the merger remnant, emit gravitational waves and coalesce. The merger also triggers star formation and supermassive black hole growth, and gas outflows regulate the stellar content.sup.1-3. Although this theoretical picture is supported by recent observations of starburst-driven and supermassive black hole-driven outflows.sup.4-6, it remains unclear how these outflows interact with the interstellar medium. Furthermore, the relative contributions of star formation and black hole activity to galactic feedback remain unknown.sup.7-9. Here we report observations of dual outflows in the central region of the prototypical merger NGC 6240. We find a black-hole-driven outflow of [O iii] to the northeast and a starburst-driven outflow of H[alpha] to the northwest. The orientations and positions of the outflows allow us to isolate them spatially and study their properties independently. We estimate mass outflow rates of 10 and 75 solar masses per year for the H[alpha] bubble and the [O iii] cone, respectively. Their combined mass outflow is comparable to the star formation rate.sup.10, suggesting that negative feedback on star formation is occurring. Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes (with separations of one to ten kiloparsecs), which eventually sink into the centre of the merger remnant, emit gravitational waves and coalesce. The merger also triggers star formation and supermassive black hole growth, and gas outflows regulate the stellar content . Although this theoretical picture is supported by recent observations of starburst-driven and supermassive black hole-driven outflows , it remains unclear how these outflows interact with the interstellar medium. Furthermore, the relative contributions of star formation and black hole activity to galactic feedback remain unknown . Here we report observations of dual outflows in the central region of the prototypical merger NGC 6240. We find a black-hole-driven outflow of [O III] to the northeast and a starburst-driven outflow of Hα to the northwest. The orientations and positions of the outflows allow us to isolate them spatially and study their properties independently. We estimate mass outflow rates of 10 and 75 solar masses per year for the Hα bubble and the [O III] cone, respectively. Their combined mass outflow is comparable to the star formation rate , suggesting that negative feedback on star formation is occurring. Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes (with separations of one to ten kiloparsecs), which eventually sink into the centre of the merger remnant, emit gravitational waves and coalesce. The merger also triggers star formation and supermassive black hole growth, and gas outflows regulate the stellar content 1 – 3 . Although this theoretical picture is supported by recent observations of starburst-driven and supermassive black hole-driven outflows 4 – 6 , it remains unclear how these outflows interact with the interstellar medium. Furthermore, the relative contributions of star formation and black hole activity to galactic feedback remain unknown 7 – 9 . Here we report observations of dual outflows in the central region of the prototypical merger NGC 6240. We find a black-hole-driven outflow of [O iii ] to the northeast and a starburst-driven outflow of Hα to the northwest. The orientations and positions of the outflows allow us to isolate them spatially and study their properties independently. We estimate mass outflow rates of 10 and 75 solar masses per year for the Hα bubble and the [O iii ] cone, respectively. Their combined mass outflow is comparable to the star formation rate 10 , suggesting that negative feedback on star formation is occurring. Observations of NGC 6240 show two differently driven outflows of different gases with a combined outflow rate comparable to the star formation rate, suggesting possible negative feedback on star formation. Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes (with separations of one to ten kiloparsecs), which eventually sink into the centre of the merger remnant, emit gravitational waves and coalesce. The merger also triggers star formation and supermassive black hole growth, and gas outflows regulate the stellar content. Although this theoretical picture is supported by recent observations of starburst-driven and supermassive black hole-driven outflows, it remains unclear how these outflows interact with the interstellar medium. Furthermore, the relative contributions of star formation and black hole activity to galactic feedback remain unknown. Here we report observations of dual outflows in the central region of the prototypical merger NGC 6240. We find a black-hole-driven outflow of [O iii] to the northeast and a starburst-driven outflow of Ha to the northwest. The orientations and positions of the outflows allow us to isolate them spatially and study their properties independently. We estimate mass outflow rates of 10 and 75 solar masses per year for the Ha bubble and the [O iii] cone, respectively. Their combined mass outflow is comparable to the star formation rate, suggesting that negative feedback on star formation is occurring. Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes (with separations of one to ten kiloparsecs), which eventually sink into the centre of the merger remnant, emit gravitational waves and coalesce. The merger also triggers star formation and supermassive black hole growth, and gas outflows regulate the stellar content1-3. Although this theoretical picture is supported by recent observations of starburst-driven and supermassive black hole-driven outflows4-6, it remains unclear how these outflows interact with the interstellar medium. Furthermore, the relative contributions of star formation and black hole activity to galactic feedback remain unknown7-9. Here we report observations of dual outflows in the central region of the prototypical merger NGC 6240. We find a black-hole-driven outflow of [O III] to the northeast and a starburst-driven outflow of Hα to the northwest. The orientations and positions of the outflows allow us to isolate them spatially and study their properties independently. We estimate mass outflow rates of 10 and 75 solar masses per year for the Hα bubble and the [O III] cone, respectively. Their combined mass outflow is comparable to the star formation rate 10 , suggesting that negative feedback on star formation is occurring. |
Audience | Academic |
Author | Davies, R. I. Nevin, R. Müller-Sánchez, F. Treister, E. Comerford, J. M. Privon, G. C. |
Author_xml | – sequence: 1 givenname: F. surname: Müller-Sánchez fullname: Müller-Sánchez, F. email: francisco.mullersanchez@colorado.edu organization: Department of Astrophysical and Planetary Sciences, University of Colorado – sequence: 2 givenname: R. surname: Nevin fullname: Nevin, R. organization: Department of Astrophysical and Planetary Sciences, University of Colorado – sequence: 3 givenname: J. M. surname: Comerford fullname: Comerford, J. M. organization: Department of Astrophysical and Planetary Sciences, University of Colorado – sequence: 4 givenname: R. I. surname: Davies fullname: Davies, R. I. organization: Max-Planck-Institut für Extraterrestrische Physik – sequence: 5 givenname: G. C. surname: Privon fullname: Privon, G. C. organization: Instituto de Astrofísica and Centro de Astroingeniería, Facultad de Física, Pontificia Universidad Católica de Chile, Department of Astronomy, University of Florida – sequence: 6 givenname: E. surname: Treister fullname: Treister, E. organization: Instituto de Astrofísica and Centro de Astroingeniería, Facultad de Física, Pontificia Universidad Católica de Chile |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/29670264$$D View this record in MEDLINE/PubMed |
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Snippet | Theoretical models and numerical simulations have established a framework of galaxy evolution in which galaxies merge and create dual supermassive black holes... |
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SubjectTerms | 639/33/34/124 639/33/34/863 Astronomical models Black holes Black holes (Astronomy) Coalescing Computer simulation Feedback Galactic evolution Galaxies Gravitational waves Gravity Humanities and Social Sciences Interstellar matter Interstellar medium Kinematics Letter Mathematical models Morphology multidisciplinary Negative feedback Numerical analysis Numerical simulations Optics Outflow Properties Science Science (multidisciplinary) Space telescopes Spectrum analysis Star & galaxy formation Star formation Star formation rate Stars Stars & galaxies Supermassive black holes |
Title | Two separate outflows in the dual supermassive black hole system NGC 6240 |
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