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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.

Dr Becky Smethurst

Royal Astronomical Society Research Fellow

Research theme

  • Astronomy and astrophysics

Sub department

  • Astrophysics

Research groups

  • Galaxy formation and evolution
  • Hintze Centre for Astrophysical Surveys
rebecca.smethurst@physics.ox.ac.uk
Personal website (with contact email address for non-academic queries)
  • About
  • Research
  • Prizes, awards and recognition
  • Science Communication
  • Publications

Galaxy Zoo: kinematics of strongly and weakly barred galaxies

Monthly Notices of the Royal Astronomical Society Oxford University Press 521:2 (2023) 1775-1793

Authors:

Tobias Géron, Rebecca J Smethurst, Chris Lintott, Sandor Kruk, Karen L Masters, Brooke Simmons, Kameswara Bharadwaj Mantha, Mike Walmsley, L Garma-Oehmichen, Niv Drory, Richard R Lane

Abstract:

We study the bar pattern speeds and corotation radii of 225 barred galaxies, using integral field unit data from MaNGA and the Tremaine–Weinberg method. Our sample, which is divided between strongly and weakly barred galaxies identified via Galaxy Zoo, is the largest that this method has been applied to. We find lower pattern speeds for strongly barred galaxies than for weakly barred galaxies. As simulations show that the pattern speed decreases as the bar exchanges angular momentum with its host, these results suggest that strong bars are more evolved than weak bars. Interestingly, the corotation radius is not different between weakly and strongly barred galaxies, despite being proportional to bar length. We also find that the corotation radius is significantly different between quenching and star-forming galaxies. Additionally, we find that strongly barred galaxies have significantly lower values for R, the ratio between the corotation radius and the bar radius, than weakly barred galaxies, despite a big overlap in both distributions. This ratio classifies bars into ultrafast bars (R < 1.0; 11 per cent of our sample), fast bars (1.0 < R < 1.4; 27 per cent), and slow bars (R > 1.4; 62 per cent). Simulations show that R is correlated with the bar formation mechanism, so our results suggest that strong bars are more likely to be formed by different mechanisms than weak bars. Finally, we find a lower fraction of ultrafast bars than most other studies, which decreases the recently claimed tension with Lambda cold dark matter. However, the median value of R is still lower than what is predicted by simulations.
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Evidence for non-merger co-evolution of galaxies and their supermassive black holes

(2022)

Authors:

Rj Smethurst, Rs Beckmann, Bd Simmons, A Coil, J Devriendt, Y Dubois, Il Garland, Cj Lintott, G Martin, S Peirani
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Details from ArXiV

Supermassive black holes in merger-free galaxies have higher spins which are preferentially aligned with their host galaxy

(2022)

Authors:

RS Beckmann, RJ Smethurst, BD Simmons, A Coil, Y Dubois, IL Garland, CJ Lintott, G Martin, S Peirani, C Pichon
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Details from ArXiV

Gems of the Galaxy Zoos—A Wide-ranging Hubble Space Telescope Gap-filler Program* *This research is based on observations made with the NASA/ESA Hubble Space Telescope obtained from the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy, Inc., under NASA contract NAS 5-26555. These observations are associated with program 15445.

The Astronomical Journal American Astronomical Society 163:4 (2022) 150

Authors:

William C Keel, Jean Tate, O Ivy Wong, Julie K Banfield, Chris J Lintott, Karen L Masters, Brooke D Simmons, Claudia Scarlata, Carolin Cardamone, Rebecca Smethurst, Lucy Fortson, Jesse Shanahan, Sandor Kruk, Izzy L Garland, Colin Hancock, David O’Ryan
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Gems of the Galaxy Zoos -- a Wide-Ranging Hubble Space Telescope Gap-Filler Program

(2022)

Authors:

William C Keel, Jean Tate, O Ivy Wong, Julie K Banfield, Chris J Lintott, Karen L Masters, Brooke D Simmons, Claudia Scarlata, Carolin Cardamone, Rebecca Smethurst, Lucy Fortson, Jesse Shanahan, Sandor Kruk, Izzy L Garland, Colin Hancock, David O'Ryan
More details from the publisher
Details from ArXiV

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