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タイトル
和文: 
英文:Reconsideration of generalized temperatures of non-equilibrium plasma based on Nonextensive statistical physics 
著者
和文: 菊池浩司, 赤塚洋.  
英文: Koji Kikuchi, Hiroshi Akatsuka.  
言語 English 
掲載誌/書名
和文: 
英文:Bull. American Phys. Soc. 
巻, 号, ページ        
出版年月 2025年10月13日 
出版者
和文: 
英文: 
会議名称
和文: 
英文:The 78th Annual Gaseous Electronics Conference (GEC2025) 
開催地
和文:ソウル 
英文:Seoul 
公式リンク https://schedule.aps.org/gec/2025/events/DR1/2
 
アブストラクト Non-equilibrium plasma has attracted enormous attention to its excellent physical phenomena, which are highly regarded by the industrial community. However, in non-equilibrium plasmas, the electron temperature cannot be uniquely determined unless the energy-distribution function is approximated as an ideal Maxwell–Boltzmann distribution based on traditional Boltzmann–Gibbs statistics, where the slope of the Boltzmann plot has physical significance as the temperature. To overcome this problem, the Tsallis and the Renyi entropies are applied to non-equilibrium He plasma. Consequently, the temperature can be determined not from an approximated exponential distribution as a straight line in the Boltzmann plot, but from a power-law distribution under the entropy maximization principle, considering the effects of high-energy electrons that were previously ignored. However, since the distribution function under the Tsallis and the Renyi entropies maximization principle requires a self-consistent function that cannot be solved analytically, a self-consistent iterative scheme is proposed and demonstrated to calculate the temperature. As a result, the electron temperature is uniquely determined in non-equilibrium plasmas while satisfying the entropy maximization principle. This study may open up new prospects for describing more detailed properties of plasma using another parameter q, expanding the meaning of temperature T.

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