47 citations · 95 across the 5 of their papers we have counts for
5 papers
Alfvenic Turbulence Beyond the Ambipolar Diffusion Scale
Blakesley Burkhart, A. Lazarian, D. Balsara +2
We investigate the nature of the Alfvénic turbulence cascade in two fluid MHD simulations in order to determine if turbulence is damped once the ion and neutral species become deco…
Observational Diagnostics for Two-Fluid Turbulence in Molecular Clouds As Suggested by Simulations
Chad D. Meyer, Dinshaw S. Balsara, Blakesley Burkhart +1
We present high resolution simulations of two-fluid (ion-neutral) MHD turbulence with resolutions as large as 512^3. The simulations are supersonic and mildly sub-Alfvenic, in keep…
MHD modeling on geodesic grids
V. Florinski, X. Guo, D. S. Balsara +1
This report describes a new magnetohydrodynamic numerical model based on a hexagonal spherical geodesic grid. The model is designed to simulate astrophysical flows of partially ion…
Efficient Implementation of ADER Schemes for Euler and Magnetohydrodynamical Flows on Structured Meshes -- Comparison with Runge-Kutta Methods
Dinshaw S. Balsara, Chad Meyer, Michael Dumbser +2
ADER (Arbitrary DERivative in space and time) methods for the time-evolution of hyperbolic conservation laws have recently generated a fair bit of interest. The ADER time update ca…
Evaluating the Magnetorotational Instability's Dependence on Numerical Algorithms and Resolution
Dinshaw S. Balsara, Chad Meyer
We have studied saturated, MRI-driven turbulence using three-dimensional, isothermal simulations with resolutions that extend from 64 to 192 zones in each direction. The simulation…