论文标题
激光系统的设计,优化和黑盒优化
Design, Optimization, and Blackbox Optimization of Laser Systems
论文作者
论文摘要
流动的脉搏扩增(CPA)和随后的非线性光学(NLO)系统构成了半导体和增材制造业,通信网络,生物学和医学,国防和国家安全,以及过去几十年来其他许多领域的骨干。精确有效地对CPA和基于NLO的激光系统进行建模,因为众多耦合线性和非线性过程以及模拟框架中的高可变性。缺乏完全集成的模型会严重障碍,进一步缩小了定制现有或实现新的CPA+NLO系统的进步。这样的工具是实现新兴优化和依赖于数据驱动的机器学习方法的逆设计方法的关键。在这里,我们提出了一个模块化的启动软件模型,其中包括一系列放大器设计和非线性光学技术。模拟器提供了时间和频率分辨的电磁场,以及能量,通量和光谱分布的基本物理特征。为了证明其鲁棒性和现实世界的适用性 - 特别是逆向工程,系统优化和逆设计 - 我们介绍了一项关于LCLS-II照相注射器激光器的案例研究,该案例是高功率和频谱上的非平凡的CPA+NLO系统的代表。
Chirped pulse amplification (CPA) and subsequent nonlinear optical (NLO) systems constitute the backbone of myriad advancements in semiconductor and additive manufacturing, communication networks, biology and medicine, defense and national security, and a host of other sectors over the past decades. Accurately and efficiently modeling CPA and NLO-based laser systems is challenging because of the multitude of coupled linear and nonlinear processes and high variability in simulation frameworks. The lack of fully-integrated models severely hampers further advances in tailoring existing or materializing new CPA+NLO systems. Such tools are the key to enabling emerging optimization and inverse design approaches reliant on data-driven machine learning methods. Here, we present a modular start-to-end software model encompassing an array of amplifier designs and nonlinear optics techniques. The simulator renders time- and frequency-resolved electromagnetic fields alongside essential physical characteristics of energy, fluence, and spectral distribution. To demonstrate its robustness and real-world applicability -- specifically, reverse engineering, system optimization, and inverse design -- we present a case study on the LCLS-II photo-injector laser, representative of a high-power and spectro-temporally non-trivial CPA+NLO system.