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Plasma Turbulence in the Local Bubble

2008/02/29 by Steven R. Spangler · 12 citations
Physics and Astronomy · #Astronomy and Astrophysical Research #Interstellar medium #Line-of-sight #Local Bubble #Magnetic field #Magnetohydrodynamic turbulence #Plasma #Pulsar #Pulsars and Gravitational Waves Research #Scintillation #Solar and Space Plasma Dynamics #Turbulence #astro-ph

paper · pdf · doi:10.1007/s11214-008-9391-7

published in Space Science Reviews 143(1-4), 277-290 (Springer Science+Business Media) · Submitted to Space Science Reviews as contribution to Proceedings of ISSI (International Space Science Institute) workshop "From the Heliosphere to the Local Bubble". Refereed version accepted for publication

arxiv created 2008/06/05 · openalex publication_date 2008/06/23 · arxiv updated 2009/12/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/08/05

Abstract

Turbulence in the Local Bubble could play an important role in the thermodynamics of the gas that is there. The best astronomical technique for measuring turbulence in astrophysical plasmas is radio scintillation. Measurements of the level of scattering to the nearby pulsar B0950+08 by Philips and Clegg in 1992 showed a markedly lower value for the line-of-sight averaged turbulent intensity parameter <CN2> than is observed for other pulsars, consistent with radio wave propagation through a highly rarefied plasma. In this paper, we discuss the observational progress that has been made since that time. At present, there are four pulsars (B0950+08, B1133+16, J0437-4715, and B0809+74) whose lines of sight seem to lie mainly within the local bubble. The mean densities and line of sight components of the interstellar magnetic field along these lines of sight are smaller than nominal values for pulsars, but not by as much expected. Three of the four pulsars also have measurements of interstellar scintillation. The value of the parameter <CN2> is smaller than normal for two of them, but is completely nominal for the third. This inconclusive status of affairs could be improved by measurements and analysis of ``arcs'' in ``secondary spectra'' of pulsars.

Citations