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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Present states and future prospect of fast ignition realization experiment (FIREX) with Gekko and LFEX Lasers at ILE
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Present states and future prospect of fast ignition realization experiment (FIREX) with Gekko and LFEX Lasers at ILE

机译:在ILE上使用Gekko和LFEX激光器进行快速点火实现实验(FIREX)的现状和未来展望

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摘要

The fast ignition realization experiment (FIREX) project is progressing. The new short pulse laser system, LFEX laser, has been completely assembled and one of the four beamlets is now in operation. A fast-ignition experiment was performed using this single short pulse combined with the Gekko Ⅻ implosion laser. The energy of the GⅫ implosion laser was about 2 kJ and the pulse width was 1.5 ns. The energy of the LFEX laser was increased upto 800 J and two pulse durations 5 and 1.6 ps were compared. Targets were deuterated plastic shells with gold cones. It was found that the neutron yield was increased by a factor of 30 as a result of the fast electron-induced heating in LFEX 1.6 ps shot. The estimated coupling efficiency between the LFEX laser pulse and the compressed fuel was low (less than 5%), This may be due to pre-plasma formed by light arriving at the target before the main laser pulse. Further investigations and attempts to overcome these problems are now in progress.
机译:快速点火实现实验(FIREX)项目正在进行中。新的短脉冲激光系统LFEX激光器已经完全组装好,四个小光束之一正在运行。使用该单个短脉冲结合GekkoⅫ内爆激光器进行了快速点火实验。 G 3内爆激光器的能量约为2 kJ,脉冲宽度为1.5 ns。 LFEX激光的能量增加到800 J,并且比较了两个脉冲持续时间5和1.6 ps。目标是带有金锥的氘化塑料壳。发现由于LFEX 1.6 ps射中的快速电子感应加热,中子产率提高了30倍。 LFEX激光脉冲与压缩燃料之间的估计耦合效率很低(小于5%),这可能是由于在主激光脉冲之前到达目标的光形成了预等离子体。现在正在进行进一步的研究和克服这些问题的尝试。

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