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Solar wind protons: Three‐dimensional velocity distributions and derived plasma parameters measured between 0.3 and 1 AU

 

作者: E. Marsch,   K.‐H. Mühlhäuser,   R. Schwenn,   H. Rosenbauer,   W. Pilipp,   F. M. Neubauer,  

 

期刊: Journal of Geophysical Research: Space Physics  (WILEY Available online 1982)
卷期: Volume 87, issue A1  

页码: 52-72

 

ISSN:0148-0227

 

年代: 1982

 

DOI:10.1029/JA087iA01p00052

 

数据来源: WILEY

 

摘要:

A survey of solar wind three‐dimensional proton velocity distributions as measured by the Helios solar probes between 0.3 and 1 AU is presented. A variety of nonthermal features like temperature anisotropies, heat fluxes, or proton double streams has been observed. The relative speed of the second proton component increases on the average with increasing wind speed and decreasing heliocentric radial distance and shows a correlation with the local Alfvén speed. A marked anisotropy in the core of proton distributions with a temperature larger perpendicular than parallel to the magnetic field (T∥c1 frequently caused by ‘high‐energy shoulders’ or a resolved second proton component. No clear radial gradient of the temperature anisotropy could be established in these cases. The average dependence of the proton temperature on heliocentric radial distance is given by a power lawR−α, where α ≈ 1 forT⊥pand 0.7<α<1 forT⊥pare compatible neither with isothermal nor adiabatic expansion. Flattest radial temperature profiles are obtained in high‐speed streams. These observations indicate that local heating or considerable proton heat conduction occurs in the solar wind. Some consequences of nonthermal features of proton distributions for plasma instabilities are discussed as well as kinetic processes that may s

 

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