English

Transport properties of the Azimuthal Magnetorotational Instability

Solar and Stellar Astrophysics 2017-11-21 v2 Fluid Dynamics

Abstract

The magnetorotational instability (MRI) is thought to be a powerful source of turbulence in Keplerian accretion disks. Motivated by recent laboratory experiments, we study the MRI driven by an azimuthal magnetic field in an electrically conducting fluid sheared between two concentric rotating cylinders. By adjusting the rotation rates of the cylinders, we approximate angular velocity profiles ωrq\omega \propto r^{q}. We perform direct numerical simulations of a steep profile close to the Rayleigh line q2q \gtrsim -2 and a quasi-Keplerian profile q3/2q \approx -3/2 and cover wide ranges of Reynolds (Re4104Re\le 4\cdot10^4) and magnetic Prandtl numbers (0Pm10\le Pm \le 1). In the quasi-Keplerian case, the onset of instability depends on the magnetic Reynolds number, with Rmc50Rm_c \approx 50, and angular momentum transport scales as PmRe2\sqrt{Pm} Re^2 in the turbulent regime. The ratio of Maxwell to Reynolds stresses is set by RmRm. At the onset of instability both stresses have similar magnitude, whereas the Reynolds stress vanishes or becomes even negative as RmRm increases. For the profile close to the Rayleigh line, the instability shares these properties as long as Pm0.1Pm\gtrsim0.1, but exhibits a markedly different character if Pm0Pm\rightarrow 0, where the onset of instability is governed by the Reynolds number, with Rec1250Re_c \approx 1250, transport is via Reynolds stresses and scales as Re2Re^2. At intermediate Pm=0.01Pm=0.01 we observe a continuous transition from one regime to the other, with a crossover at Rm=O(100)Rm=\mathcal{O}(100). Our results give a comprehensive picture of angular momentum transport of the MRI with an imposed azimuthal field.

Keywords

Cite

@article{arxiv.1705.03785,
  title  = {Transport properties of the Azimuthal Magnetorotational Instability},
  author = {Anna Guseva and Ashley P. Willis and Rainer Hollerbach and Marc Avila},
  journal= {arXiv preprint arXiv:1705.03785},
  year   = {2017}
}