Published February 1989 | Version v1
Journal article

Effects of magnetic fields on the growth of thermal instabilities in cooling flows

  • 1. National Radio Astronomy Observatory, Charlottesville, VA (USA)
  • 2. Harvard-Smithsonian Center for Astrophysics, Cambridge, MA (USA)

Description

The effects of heat conduction and magnetic fields on the growth of thermal instabilities in cooling flows are examined using a time-dependent hydrodynamics code. It is found that, for magnetic field strengths of roughly 1 micro-Gauss, magnetic pressure forces can completely suppress shocks from forming in thermally unstable entropy perturbations with initial length scales as large as 20 kpc, even for initial amplitudes as great as 60 percent. Perturbations with initial amplitudes of 50 percent and initial magnetic field strengths of 1 micro-Gauss cool to 10,000 K on a time scale which is only 22 percent of the initial instantaneous cooling time. Nonlinear perturbations can thus condense out of cooling flows on a time scale substantially less than the time required for linear perturbations and produce significant mass deposition of cold gas while the accreting intracluster gas is still at large radii. 31 references

Additional details

Publishing Information

Journal Title
Astrophysical Journal
Journal Volume
337
Series
Astrophys. J.
Journal Page Range
97-107
ISSN
0004-637X
CODEN
ASJOA