点火系统
热核聚变
内爆
休克(循环)
惯性约束聚变
脉搏(音乐)
激光器
物理
冲击波
机械
光学
材料科学
核工程
等离子体
核物理学
热力学
工程类
内科学
探测器
医学
作者
S. Yu. Gus’kov,G. A. Vergunova
出处
期刊:Physical review
[American Physical Society]
日期:2024-06-14
卷期号:109 (6)
标识
DOI:10.1103/physreve.109.065209
摘要
Shock-ignition effect in indirect-drive thermonuclear target is demonstrated on the base of numerical simulations. Thermonuclear gain (in relation to laser pulse energy) of a shock-ignited indirect-drive thermonuclear capsule is obtained, which is 22.5 times higher than that at a traditional spark ignition of the capsule with the same DT-fuel mass, wherein the shock-ignition laser pulse energy is 1.5 times less than the energy of a laser pulse at traditional spark ignition. To implement the shock-ignition effect in indirect-drive target, a rapid increase in radiation temperature is required over several hundred picoseconds at the final stage of thermonuclear capsule implosion. The ability of such a rapid response of radiation temperature to variation in the intensity of an x-ray-producing laser pulse is the main factor in the uncertainty of the degree of manifestation of the shock-ignition effect in an indirect-drive target. This circumstance, first of all, requires experimental study.
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