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首页> 外文期刊>Journal of Experimental and Theoretical Physics >On the Possibility of Target Plasma Ignition under the Conditions of Intertial Nuclear Fusion
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On the Possibility of Target Plasma Ignition under the Conditions of Intertial Nuclear Fusion

机译:惯性核聚变条件下靶等离子体点火的可能性

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The thermonuclear gain G for bulk and spark ignitions are calculated using a mathematical simulation of thermonuclear combustion in a DT plasma of laser targets for various parameters of the target plasma and (isobaric and isochoric) ignitors. The critical parameters of ignitors at which an effective nuclear burst occurs with G ~ 100 are calculated. It is shown that a further increase in the temperature and size of the ignitors virtually does not affect the efficiency of DT fuel burnup. Irrespective of the ignition technique, the value of G can be estimated with the help of a simple asymptotic formula. At the same time, the critical parameters of ignitors are determined to a considerable extent by the mode of ignition and by the target parameters. Spark ignition with an isochoric ignitor corresponding to the fast ignition mode is considered in detail. It is shown that the main critical parameter for optimal isochoric ignitors is their thermal energy liberated upon absorption of an auxiliary ultrashort laser pulse. The critical values of this energy are calculated.
机译:针对靶等离子体和(等压和等容)点火器的各种参数,使用激光靶DT等离子体中热核燃烧的数学模拟来计算用于批量点火和火花点火的热核增益G。计算了在G〜100时发生有效核爆的点火器的关键参数。结果表明,点火器的温度和尺寸的进一步增加实际上不会影响DT燃料的燃烧效率。不管点火技术如何,都可以借助简单的渐近公式估算G的值。同时,点火器的关键参数在很大程度上取决于点火方式和目标参数。详细考虑了用等速点火器对应于快速点火模式的火花点火。结果表明,最佳等容点火器的主要关键参数是吸收辅助超短激光脉冲后释放的热能。计算出该能量的临界值。

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