Turbulence Spectra from Spectral Lines: Tests of the Velocity Channel Analysis and Velocity Coordinate Spectrum Techniques
arXiv:astro-ph/0611463 · doi:10.1088/0004-637X/693/2/1074
Abstract
Turbulence is a key element of the dynamics of astrophysical fluids, including those of interstellar medium, clusters of galaxies and circumstellar regions. Turbulent motions induce Doppler shifts of observable emission and absorption lines and this motivates studies of turbulence using precision spectroscopy. We provide high resolution numerical testing of the two promising techniques, namely, Velocity Channel Analysis and Velocity Coordinate Spectrum. We obtain an expression for the shot noise that the discretization of the numerical data entails and successfully test it. We show that numerical resolution required for recovering the underlying turbulent spectrum from observations depend on the spectral index of velocity fluctuations. Thus the low resolution testing may be misleading.
References in corpus (5)
- Density Fluctuations in MHD Turbulence: Spectra, Intermittency and Topology
- Velocity centroids as tracers of the turbulent velocity statistics
- The Power Spectrum of Supersonic Turbulence in Perseus
- Studying Turbulence from Doppler-broadened Absorption Lines: Statistics of Logarithms of Intensity
- Theoretical approaches to particle propagation and acceleration in turbulent intergalactic medium