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Black Hole

Lensing of space time around a black hole. At Oxford we study black holes observationally and theoretically on all size and time scales - it is some of our core work.

Credit: ALAIN RIAZUELO, IAP/UPMC/CNRS. CLICK HERE TO VIEW MORE IMAGES.

Professor Andrew Bunker

Professor of Astrophysics

Research theme

  • Astronomy and astrophysics

Sub department

  • Astrophysics

Research groups

  • Galaxy formation and evolution
Andy.Bunker@physics.ox.ac.uk
Telephone: 01865 (2)83126
Denys Wilkinson Building, room 702
  • About
  • Publications

GA-NIFS: A massive black hole in a low-metallicity AGN atz ∼ 5.55 revealed by JWST/NIRSpec IFS

Astronomy & Astrophysics EDP Sciences 677 (2023) A145-A145

Authors:

Hannah Übler, Roberto Maiolino, Emma Curtis-Lake, Pablo G Pérez-González, Mirko Curti, Michele Perna, Santiago Arribas, Stéphane Charlot, Madeline A Marshall, Francesco D’Eugenio, Jan Scholtz, Andrew Bunker, Stefano Carniani, Pierre Ferruit, Peter Jakobsen, Hans-Walter Rix, Bruno Rodríguez Del Pino, Chris J Willott, Torsten Boeker, Giovanni Cresci, Gareth C Jones, Nimisha Kumari, Tim Rawle

Abstract:

In the local Universe, the ratio between the mass of a central black hole and the stellar mass of its host galaxy is $\sim 0.1 \%$. Recently, JWST discovered numerous galaxies at $z>4$ that seem to deviate from the local relation, with black holes overmassive by $10-100$ times. Similar galaxies were also discovered at cosmic noon. The intrinsic scatter in the relation describes how much the evolutionary histories of the single galaxies deviate from the mean evolutionary pattern of their parent dataset. This Research Note examines whether a cosmic evolution of the intrinsic scatter can be detected by assessing its value for datasets in various redshift ranges. Using data from the local Universe ($z < 0.055$), low ($ 0.4 \leq z \leq 0.9$), intermediate ($ 0.9 \leq z \leq 4$), and high ($z > 4$) redshift, we conclude that there is no statistically significant redshift evolution of the intrinsic scatter.Comment: Accepted on Research Notes of the AAS. This is a concise note (3 pages, 1 figure) regarding the direct application of the model described in arXiv:2308.12331 to various datasets of overmassive black holes in various redshift range

JADES: deep spectroscopy of a low-mass galaxy at redshift 2.3 quenched by environment

(2023)

Authors:

Lester Sandles, Francesco D'Eugenio, Jakob M Helton, Roberto Maiolino, Kevin Hainline, William M Baker, Christina C Williams, Stacey Alberts, Andrew J Bunker, Stefano Carniani, Stephane Charlot, Jacopo Chevallard, Mirko Curti, Emma Curtis-Lake, Daniel J Eisenstein, Zhiyuan Ji, Benjamin D Johnson, Tobias J Looser, Tim Rawle, Brant Robertson, Bruno Rodríguez Del Pino, Sandro Tacchella, Hannah Übler, Christopher NA Willmer, Chris Willott

The UV Continuum Slopes of Early Star-Forming Galaxies in JADES

(2023)

Authors:

Michael W Topping, Daniel P Stark, Ryan Endsley, Lily Whitler, Kevin Hainline, Benjamin D Johnson, Brant Robertson, Sandro Tacchella, Zuyi Chen, Stacey Alberts, William M Baker, Andrew J Bunker, Stefano Carniani, Stephane Charlot, Jacopo Chevallard, Emma Curtis-Lake, Christa DeCoursey, Eiichi Egami, Daniel J Eisenstein, Zhiyuan Ji, Roberto Maiolino, Christina C Williams, Christopher NA Willmer, Chris Willott, Joris Witstok

JADES NIRSpec Spectroscopy of GN-z11: Lyman-α emission and possible enhanced nitrogen abundance in a z = 10.60 luminous galaxy

Astronomy & Astrophysics EDP Sciences 677 (2023) A88-A88

Authors:

Andrew J Bunker, Aayush Saxena, Alex J Cameron, Chris J Willott, Emma Curtis-Lake, Peter Jakobsen, Stefano Carniani, Renske Smit, Roberto Maiolino, Joris Witstok, Mirko Curti, Francesco D’Eugenio, Gareth C Jones, Pierre Ferruit, Santiago Arribas, Stephane Charlot, Jacopo Chevallard, Giovanna Giardino, Anna de Graaff, Tobias J Looser, Nora Lützgendorf, Michael V Maseda, Tim Rawle, Hans-Walter Rix, Bruno Rodríguez Del Pino

Abstract:

We present JADES JWST/NIRSpec spectroscopy of GN-z11, the most luminous candidate z>10 Lyman break galaxy in the GOODS-North field with MUV =-21.5. We derive a redshift of z = 10.603 (lower than previous determinations) based on multiple emission lines in our low and medium resolution spectra over 0.7- 5.3 μm. We significantly detect the continuum and measure a blue rest-UV spectral slope of β =-2.4. Remarkably, we see spatially extended Lyman-α in emission (despite the highly neutral intergalactic medium expected at this early epoch), offset 555 km s-1 redwards of the systemic redshift. From our measurements of collisionally excited lines of both low and high ionisation (including [O II] λ3727, [Ne III] λ3869, and C III] λ1909), we infer a high ionisation parameter (log U ∼-2). We detect the rarely seen N IV] λ1486 and N III] λ1748 lines in both our low and medium resolution spectra, with other high ionisation lines seen in the low resolution spectrum, such as He II (blended with O III]) and C IV (with a possible P-Cygni profile). Based on the observed rest-UV line ratios, we cannot conclusively rule out photoionisation from an active galactic nucleus (AGN), although the high C III]/He II and N III]/He II ratios are compatible with a star formation explanation. If the observed emission lines are powered by star formation, then the strong N III] λ1748 observed may imply an unusually high N/O abundance. Balmer emission lines (Hγ, Hδ) are also detected, and if powered by star formation rather than an AGN, we infer a star formation rate of ∼20-30 M⊙ yr-1 (depending on the initial mass function) and low dust attenuation. Our NIRSpec spectroscopy confirms that GN-z11 is a remarkable galaxy with extreme properties seen 430 Myr after the Big Bang

The ionizing photon production efficiency at z ∼ 6 for Lyman-alpha emitters using JEMS and MUSE

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 523:4 (2023) 5468-5486

Authors:

C Simmonds, S Tacchella, M Maseda, CC Williams, WM Baker, CEC Witten, BD Johnson, B Robertson, A Saxena, F Sun, J Witstok, R Bhatawdekar, K Boyett, AJ Bunker, S Charlot, E Curtis-Lake, E Egami, DJ Eisenstein, Z Ji, R Maiolino, L Sandles, R Smit, H Übler, CJ Willott

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