首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Anisotropic angular broadening in the solar wind
Authors:A K R Anantharamaiah  B Pradeep Gothoskar  C T J Cornwell
Institution:(1) Raman Research Institute, 560 080 Bangalore, India;(2) National Center for Radio Astrophysics, 411 007 Pune, India;(3) National Radio Astronomy Observatory, 87801 Socorro, NM, USA
Abstract:We present Very Large Array observations at wavelengths of 2, 3.5, 6, and 20 cm, of angular broadening of radio sources due to the solar wind in the region 2–16 solar radii. Angular broadening is anisotropic with axial ratios in the range 2–16. Larger axial ratios are observed preferentially at smaller solar distances. Assuming that anisotropy is due to scattering blobs elongated along magnetic field lines, the distribution of position angles of the elliptically broadened images indicates that the field lines are non-radial even at the largest heliocentric distances observed here. At 5R odot, the major axis scattering angle is sim0.7Prime at lambda=6 cm and it varies with heliocentric distance asR –1.6. The level of turbulence, characterized by the wave structure function at a scale of 10 km along the major axis, normalized to lambda=20 cm, has a value 20±7 at 5R odot and varies with heliocentric distance asR –3. Comprison with earlier results suggest that the level of turbulence is higher during solar maximum. Assuming a power-law spectrum of electron density fluctuations, the fitted spectral exponents have values in the range 2.8–3.4 for scales sizes between 2–35 km. The data suggests temporal fluctuations (of up to 10%) in the spectral exponent on a time scale of a few tens of minutes. The observed structure functions at different solar distances do not show any evidence for an inner scale; the upper limits are 1 km at 2R odot and 4 km at 13R odot. These upper limits are in conflict with earlier determinations and may suggest a reduced inner scale during solar maximum.
Keywords:
本文献已被 SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号