论文标题

超高峰值激光器的多阶段平滑性多步脉冲压缩机

Multistage smoothing based multistep pulse compressor for ultrahigh peak power lasers

论文作者

Du, Shuman, Shen, Xiong, Liang, Wenhai, Wang, Peng, Liu, Jun, Li, Ruxin

论文摘要

Ultrahigh Peak Power激光器是边境激光器物理学研究的重要科学工具,其中峰值功率改善和操作安全性在同时受到当前的损坏阈值和大小的压缩光栅的限制。基于最新报告的方法“多步脉冲压缩机(MPC)”,此处提出了基于多阶段平滑的MPC(MS-MPC),以进一步提高运行安全性,操作便利性并简化MPC的整个设置。在这种优化的设计中,光束平滑不仅在预压缩器或主压缩器中执行,而且可以分为多阶段。然后,它可以在每个阶段直接保护重要的光学器件,并同时降低典型MPC的执行困难。基于棱柱对的预制剂将诱导合适的空间分散体,这更容易实现,并且足以直接保护第一个光栅。同时,不对称的四颗粒压缩机(AFGC)也将诱导空间分散体,以进一步平滑激光束,这有助于直接保护最后的光栅。这样,可以通过使用当前可用的光学元件来压缩10S-100S PW激光器,从而改善了操作安全性,从而消除了随机的空间强度调制。此外,在主放大器之前,可以添加一个额外的光束平滑阶段,以保护最大的放大晶体免受损伤。这种MS-MPC光学设计可以轻松扩展,以用于所有存在的PW激光设施,以提高其潜在的压缩脉冲能量和运行安全性。

Ultrahigh peak power lasers are important scientific tools for frontier laser-physics researches, in which both the peak power improvement and operating safety are very important meanwhile limited by the damage threshold and size of compression gratings currently. Based on a recent reported method "multistep pulse compressor (MPC)", a multistage smoothing based MPC (MS-MPC) is proposed here to further improve the running safety, operating convenience, and simplify the whole setup of the MPC. In this optimized design, the beam smoothing is not simply executed in the pre-compressor or main-compressor, but separated into multistage. Then, it can protect important optics in every stage directly and reduce the executing difficult of typical MPC at the same time. The prism pair based pre-compressor will induce suitable spatial dispersion which is easier to be achieved and enough to protect the first grating directly. At the same time, the asymmetric four-grating compressor (AFGC) will also induce spatial dispersion to further smooth the laser beam which helps to protect the last grating directly. In this way, 10s-100s PW lasers can be compressed by using current available optics with improved operating safety owing to remove random spatial intensity modulations. Furthermore, an additional beam smoothing stage can be added before the main amplifier to protect the biggest amplification crystal away from damage. This MS-MPC optical design can be easily extended to be used in all exist PW laser facilities to improve their potential compressed pulse energy and running safety.

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