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The physics of DT ignition in small fusion targets

R.C. Kirkpatrick, J.A. Wheeler1981年被引用 35Nuclear FusionIF 3出版社

Ignition of sub-milligram fusion targets is critically dependent on DT temperature, density, radius, radiation temperature, implosion velocity, and other parameters that characterize the target and its implosion. This paper discusses the interplay of such major physical processes as bremsstrahlung, Compton scattering, DT fusion, hydrodynamics, and thermal conduction during the implosion and especially near turnaround where the potential for ignition or failure most critically depends on the small differences between large rates of energy loss and gain. The phase plane analysis presented here proves to be most advantageous in understanding the DT ignition problem. Four examples are discussed in order to illustrate the interplay of the various physical processes.

日本語訳

サブミリグラム核融合ターゲットの点火は、ターゲットとその爆縮を特徴づけるDT温度、密度、半径、放射温度、爆縮速度、およびその他のパラメータに決定的に依存する。本論文では、爆縮中、特に点火または失敗の可能性が、大きなエネルギー損失率と利得率の間のわずかな差に最も決定的に依存する転回点付近における、制動放射、コンプトン散乱、DT核融合、流体力学、および熱伝導といった主要な物理過程の相互作用について論じる。ここで提示する位相平面解析は、DT点火問題の理解において最も有益であることが証明される。様々な物理過程の相互作用を説明するために、4つの例について考察する。

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IgnitionDeuterium-tritiumFusion target
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