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91探花
Theoretical physicists working at a blackboard collaboration pod in the Beecroft building.
Credit: Jack Hobhouse

John Magorrian

Associate Professor of Theoretical Astrophysics

Research theme

  • Astronomy and astrophysics

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Galaxy formation and evolution
  • Theoretical astrophysics and plasma physics at RPC
John.Magorrian@physics.ox.ac.uk
  • About
  • Publications

Constraining the mass distributions of spherical galaxies

ASTR SOC P 182 (1999) 160-161

Authors:

J Magorrian, D Ballantyne

Supermassive Black Holes and the Evolution of Galaxies

(1998)

Authors:

D Richstone, EA Ajhar, R Bender, G Bower, A Dressler, SM Faber, AV Filippenko, K Gebhardt, R Green, LC Ho, J Kormendy, T Lauer, J Magorrian, S Tremaine

The demography of massive dark objects in galaxy centers

Astronomical Journal 115:6 (1998) 2285-2305

Authors:

J Magorrian, S Tremaine, D Richstone, R Bender, G Bower, A Dressler, SM Faber, K Gebhardt, R Green, C Grillmair, J Kormendy, T Lauer

Abstract:

We construct dynamical models for a sample of 36 nearby galaxies with Hubble Space Telescope (HST) photometry and ground-based kinematics. The models assume that each galaxy is axisymmetric, with a two-integral distribution function, arbitrary inclination angle, a position-independent stellar mass-to-light ratio Y, and a central massive dark object (MDO) of arbitrary mass M鈥. They provide acceptable fits to 32 of the galaxies for some value of M鈥 and Y; the four galaxies that cannot be fitted have kinematically decoupled cores. The mass-to-light ratios inferred for the 32 well-fitted galaxies are consistent with the fundamental-plane correlation Y 鈭 L0.2, where L is galaxy luminosity. In all but six galaxies the models require at the 95% confidence level an MDO of mass M鈥 鈭 0.006Mbulge 鈮 0.006YL. Five of the six galaxies consistent with M鈥 = 0 are also consistent with this correlation. The other (NGC 7332) has a much stronger upper limit on M鈥. We predict the second-moment profiles that should be observed at HST resolution for the 32 galaxies that our models describe well. We consider various parameterizations for the probability distribution describing the correlation of the masses of these MDOs with other galaxy properties. One of the best models can be summarized thus: a fraction f 鈮 0.97 of early-type galaxies have MDOs, whose masses are well described by a Gaussian distribution in log (M鈥/Mbulge) of mean -2.28 and standard deviation 鈭0.51. There is also marginal evidence that M鈥 is distributed differently for "core" and "power law" galaxies, with core galaxies having a somewhat steeper dependence on Mbulge.

Supermassive black holes and the evolution of galaxies

NATURE 395:6701 (1998) A14-A19

Authors:

D Richstone, EA Ajhar, R Bender, G Bower, A Dressler, SM Faber, AV Filippenko, K Gebhardt, R Green, LC Ho, J Kormendy, TR Lauer, J Magorrian, S Tremaine

The Demography of Massive Dark Objects in Galaxy Centres

(1997)

Authors:

John Magorrian, Scott Tremaine, Douglas Richstone, Ralf Bender, Gary Bower, Alan Dressler, SM Faber, Karl Gebhardt, Richard Green, Carl Grillmair, John Kormendy, Tod Lauer

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