FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Stopping power in dense, high-temperature plasmas

Yu V Arkhipov, F B Baimbetov, A E Davletov, K V Starikov2000年Plasma Physics and Controlled FusionIF 2.2出版社

Within the framework of density-response formalism and starting from the effective potential which simulates quantum effects of diffraction and symmetry, an expression for the longitudinal dielectric function of semiclassical two-component plasmas is proposed. On the basis of that dielectric function, the stopping power in dense, high-temperature plasmas is calculated. It is found that quantum effects lead to energy loss enhancement when the velocity of an injected particle is small enough. An analytical expression for the stopping power in electron plasmas is obtained in the case of large particle velocity.

日本語訳

密度応答形式の枠組みと、量子効果である回折と対称性を模擬する有効ポテンシャルに基づき、半古典的二成分プラズマの縦誘電関数の表式を提案する。この誘電関数を用いて、高密度・高温プラズマ中の阻止能を計算する。その結果、注入粒子の速度が十分小さい場合、量子効果がエネルギー損失の増強をもたらすことが明らかになった。また、粒子速度が大きい場合には、電子プラズマ中の阻止能に対する解析的表式が得られる。

この論文にはまだAI要約がありません。

関連論文

Theory of interaction between particles and waves with a non-equilibrium plasma

1963Nuclear Fusion

Alpha particle stopping in a dense burning plasma

1995Nuclear Fusion

Collective Thomson scattering from high-temperature high-density plasmas revisited

2009Plasma Physics and Controlled Fusion

Thermalized collisional pre-sheath detected in dense plasma with coherent and incoherent Thomson scattering

2021Nuclear Fusion

Stopping power for alpha particles in hot dense Au plasmas

2013Nuclear Fusion

Analysis of second harmonic ICRF waves in NBI heated JT-60 plasmas

1989Nuclear Fusion

Leveraging radiation reaction via laser-driven plasma fields

2019Plasma Physics and Controlled Fusion

The energy partitioning of non-thermal particles in a plasma: the Coulomb logarithm revisited

2008Plasma Physics and Controlled Fusion

Plasma heating by energetic particles

1971Nuclear Fusion

Acceleration of plasma electrons

1965Nuclear Fusion