The Role of Pressure Anisotropy in Cosmic Ray Hydrodynamics
arXiv:1910.03052 · doi:10.3847/1538-4357/ab67bf
Abstract
Cosmic ray propagation in the Milky Way and other galaxies is largely diffusive, with mean free path determined primarily by pitch angle scattering from hydromagnetic waves with wavelength of order the cosmic ray gyroradius. In the theory of cosmic ray self confinement, the waves are generated by instabilities driven by the cosmic rays themselves. The dominant instability is due to bulk motion, or streaming, of the cosmic rays, parallel to the background magnetic field B, and transfers cosmic ray momentum and energy to the thermal gas as well as confining the cosmic rays. Classical arguments and recent numerical simulations show that self confinement due to the streaming instability breaks down unless the cosmic ray pressure and thermal gas density gradients parallel to B are aligned, a condition which is unlikely to always be satisfied We investigate an alternative mechanism for cosmic ray self confinement and heating of thermal gas based on pressure anisotropy instability. Although pressure anisotropy is demonstrably less effective than streaming instability as a self confinement and heating mechanism on global scales, it may be important on mesoscales, particularly near sites of cosmic ray injection.
Submitted to The Astrophysical Journal
References in corpus (5)
- Feedback Heating by Cosmic Rays in Clusters of Galaxies
- Cosmic Ray Scattering in Compressible Turbulence
- Interaction of Cosmic Rays with Cold Clouds in Galactic Halos
- Magnetic pumping as a source of particle heating and power-law distributions in the solar wind
- Cosmic Ray transport through gyroresonance instability in compressible turbulence
Cited by in corpus (10)
- Cosmic Ray Transport, Energy Loss, and Influence in the Multiphase Interstellar Medium
- Dynamical Effects of Cosmic Rays on the Medium Surrounding Their Sources
- The Launching of Cosmic Ray Driven Outflows
- Magnetic fields in elliptical galaxies: an observational probe of the fluctuation dynamo action
- The Magnetohydrodynamic-Particle-In-Cell Module in Athena++: Implementation and Code Tests
- Stress-Testing Cosmic Ray Physics: The Impact of Cosmic Rays on the Surviving Disk of Ram Pressure Stripped Galaxies
- Cosmic-ray current-driven instabilities -- revisiting environmental conditions
- Electron Re-acceleration via Ion Cyclotron Waves in the Intracluster Medium
- Effect of cosmic rays and ionizing radiation on observational ultraviolet plasma diagnostics in the circumgalactic medium
- Can superbubbles accelerate ultra-high energy protons?