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Long term stabilization of the beam combination laser with a phase controlled stimulated Brillouin scattering phase conjugation mirrors for the laser fusion driver

机译:光束组合激光器具有用于激光聚变驱动器的相位控制受激布里渊散射相位共轭镜的长期稳定

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摘要

Laser fusion requires very high energy/power output with high repetition rate over 10 Hz, which is very difficult with the current laser technologies. However, the recent research work on the phase controlling of the stimulated Brillouin scattering wave enables the realization of this kind of laser fusion driver. The recent progress of controlling the phase has been successfully demonstrated by the self-generated density modulation method proposed by one of the authors (Kong). Nevertheless, it showed a long-term fluctuation of the phase because of the long-term fluctuation of the density of the SBS medium due to the thermal fluctuation. This long-term thermal fluctuation is inevitable a fact in nature. The authors used a specially designed stabilizing system for the phase controlling system, which has the PZT control of the mirror for phase controlling SBS-PCM (the so-called feedback mirror). This system stabilizes the phase controlling system very well for more than 1 h. This technique will help the laser fusion driver to be realized sooner than expected. In addition, we propose a similar scheme to be applied to the ultra-fast pulse laser system, which must operate at high repetition rate for the laser fusion energy power plant.
机译:激光熔合需要非常高的能量/功率输出,并具有超过10 Hz的高重复频率,这对于当前的激光技术而言是非常困难的。然而,最近对受激布里渊散射波的相位控制的研究工作使这种激光聚变驱动器得以实现。一位作者(Kong)提出的自生密度调制方法已成功地证明了控制相位的最新进展。但是,由于热波动导致SBS介质的密度长期波动,因此显示出相位的长期波动。实际上,这种长期的热波动是不可避免的事实。作者为相位控制系统使用了经过特殊设计的稳定系统,该系统具有对相位控制SBS-PCM的反射镜(所谓的反馈反射镜)进行PZT控制。该系统可以很好地稳定相位控制系统超过1小时。该技术将帮助激光融合驱动器比预期的更快实现。此外,我们提出了一种类似的方案将应用于超快脉冲激光系统,该系统对于激光聚变能量发电厂必须以较高的重复频率运行。

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