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上海青少年控烟问卷的信度和效度分析-学报.pdfVIP

上海青少年控烟问卷的信度和效度分析-学报.pdf

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上海青少年控烟问卷的信度和效度分析-学报

Commun. Theor. Phys. (Beijing, China) 45 (2006) pp. 550–554 c International Academic Publishers Vol. 45, No. 3, March 15, 2006 Influence of Generalized (r, q) Distribution Function on Electrostatic Waves∗ M.N.S. Qureshi,1,2,3 SHI Jian-Kui,1 and MA Shi-Zhuang3 1Key Laboratory of Space Weather, the Chinese Academy of Sciences, Beijing 100080, China 2Department of Physics, Government College University, Lahore 54000, Pakistan 3 Graduate University of the Chinese Academy of Sciences, Beijing 100049, China (Received July 11, 2005) Abstract Non-Maxwellian particle distribution functions possessing high energy tail and shoulder in the profile of distribution function considerably change the damping characteristics of the waves. In the present paper Landau damping of electron plasma (Langmuir) waves and ion-acoustic waves in a hot, isotropic, unmagnetized plasma is studied with the generalized (r, q) distribution function. The results show that for the Langmuir oscillations Landau damping becomes severe as the spectral index r or q reduces. However, for the ion-acoustic waves Landau damping is more sensitive to the ion temperature than the spectral indices. PACS numbers: 52.35.Fp, 52.25.Dg Key words: generalized (r, q) distribution function, electrostatic waves, damping 1 Introduction is that the bulk of the energy loss of the wave is due In space plasmas the distribution function often follows to the net increase in energy of these particles as their an inverse power law in the high-energy tail f ∝ v−α such phase space orbits in the wave frame change from straight as kappa distribution function containing the spectral in- lines to rotational orbits, and then phase mix.

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