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Magnetorotational instability

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Full GR-MHD calculations (Hirose et al. 2004) Findings... Turbulence transports angular momentum and allows accretion to proceed ... – PowerPoint PPT presentation

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Title: Magnetorotational instability


1
Magnetorotational instability
  • More about viscous disks
  • The magnetorotational instability
  • Basic physics
  • Computer simulations
  • Laboratory experiments

2
Computer simulations of the MRI
Pseudo-Newtonian simulation use a modified
Newtonian potential to approx. effects of
GR Hawley Krolik (2001)
3
Density
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Full GR-MHD calculations (Hirose et al. 2004)
9
Findings
  • Accretion disks are always driven into a
    turbulent state by the MRI
  • Turbulence transports angular momentum and allows
    accretion to proceed
  • For most of disk, end result is crudely in
    agreement with the alpha-prescription
  • Variability of turbulence explains why accreting
    sources are variable sources of radiation
  • Magnetic fields have interesting effects close to
    the innermost stable circular orbit (ISCO)
  • Magnetic fields connect plunging material within
    the ISCO to the disk outside
  • Can continue to extract energy and angular
    momentum from matter even inside of the ISCO

10
How do we know this is true?
  • To date, most of this work on the physics of
    accretion disks is theoretical
  • We argue from basic physical principals that
    disks must behave like this
  • Little direct observational evidence for the MRI
    in real accretion disks
  • There is some interesting laboratory work

11
Prof. Lathrops Laboratory in UMd-Physics
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