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Developments in inertial fusion energy and beam fusion at magnetic confinement

机译:磁约束下惯性聚变能量和束聚变的发展

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The 70-year anniversary of the first nuclear fusion reaction of hydrogen isotopes by Oliphant, Harteck, and Rutherford is an opportunity to realize how beam fusion is the path for energy production, including both branches, the magnetic confinement fusion and the inertial fusion energy (IFE). It is intriguing that Oliphant's basic concept for igniting controlled fusion reactions by beams has made a comeback even for magnetic confinement plasma, after this beam fusion concept was revealed by the basically nonlinear processes of the well-known alternative of inertial confinement fusion using laser or particle beams. After reviewing the main streams of both directions some results are reported-as an example of possible alternatives-about how experiments with skin layer interaction and avoiding relativistic self-focusing of clean PW-ps laser pulses for IFE may possibly lead to a simplified fusion reactor scheme without the need for special compression of solid deuterium-tritium fuel.
机译:Oliphant,Harteck和Rutherford首次进行氢同位素氢原子核聚变反应70周年,这是一个机会,可以认识到束聚是如何产生能量的路径,包括分支,磁约束聚变和惯性聚变能量( IFE)。有趣的是,在通过激光或粒子惯性约束聚变的著名替代方法的基本非线性过程揭示了这种光束聚变概念之后,奥利潘特关于通过束点燃受控聚变反应的基本概念甚至卷土重来。梁。在回顾了两个方向的主流之后,报告了一些结果-作为可能替代方法的一个例子-关于表皮层相互作用的实验以及如何避免对IFE使用干净的PW-ps激光脉冲进行相对论性自聚焦可能会导致聚变反应堆简化该方案无需对固态氘-燃料进行特殊压缩。

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