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Progress and prospects of ion-driven fast ignition

机译:离子驱动快速点火的研究进展与展望

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Fusion fast ignition (FI) initiated by laser-driven ion beams is a promising concept examined in this paper. FI based on a beam of quasi-monoenergetic ions (protons or heavier ions) has the advantage of a more localized energy deposition, which minimizes the required total beam energy, bringing it close to the ≈10kJ minimum required for fuel densities ~500gcm~(-3). High-current, laser-driven ion beams are most promising for this purpose. Because they are born neutralized in picosecond timescales, these beams may deliver the power density required to ignite the compressed DT fuel, ~ 10 kJ/10 ps into a spot 20 μm in diameter. Our modelling of ion-based FI include high fusion gain targets and a proof of principle experiment. That modelling indicates the concept is feasible, and provides confirmation of our understanding of the operative physics, a firmer foundation for the requirements, and a better understanding of the optimization trade space. An important benefit of the scheme is that such a high-energy, quasi-monoenergetic ignitor beam could be generated far from the capsule (≥1 cm away), eliminating the need for a reentrant cone in the capsule to protect the ion-generation laser target, a tremendous practical benefit. This paper summarizes the ion-based FI concept, the integrated ion-driven FI modelling, the requirements on the ignitor beam derived from that modelling, and the progress in developing a suitable laser-driven ignitor ion beam.
机译:由激光驱动离子束引发的聚变快速点火(FI)是本文研究的一个有前途的概念。基于准单能离子束(质子或重离子)的FI具有更局限的能量沉积优势,可将所需的总束能量降至最低,使其接近燃料密度〜500gcm〜(〜)所需的最低≈10kJ。 -3)。为此目的,大电流,激光驱动的离子束是最有前途的。由于它们在皮秒级的时标中被中和,因此这些光束可以提供点燃压缩的DT燃料所需的功率密度,大约10 kJ / 10 ps进入直径20μm的点。我们基于离子的FI建模包括高聚变增益目标和原理验证实验。该建模表明该概念是可行的,并提供了对我们对操作物理的理解的确认,对要求的更坚实基础以及对优化交易空间的更好理解。该方案的一个重要好处是,可以在远离胶囊的位置(≥1 cm)处生成这样的高能量准单能点火器光束,从而无需在胶囊中使用可重入的圆锥体来保护离子产生激光器目标,巨大的实际利益。本文概述了基于离子的FI概念,集成的离子驱动FI建模,对从该建模得出的点火器束的要求以及开发合适的激光驱动点火器离子束的进展。

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