Kokhanovskiy Alexey, Kuprikov Evgeny, Bednyakova Anastasia, Popkov Ivan, Smirnov Sergey, Turitsyn Sergey
Novosibirsk State University, Novosibirsk, Russia, 630090.
Institute of Computational Technologies SB RAS, Novosibirsk, Russia, 630090.
Sci Rep. 2021 Jun 30;11(1):13555. doi: 10.1038/s41598-021-92996-1.
A wide variety of laser applications, that often require radiation with specific characteristics, and relative flexibility of laser configurations offer a prospect of designing systems with the parameters on demand. The inverse laser design problem is to find the system architecture that provides for the generation of the desired laser output. However, typically, such inverse problems for nonlinear systems are sensitive to the computation of the gradients of a target (fitness) function making direct back propagation approach challenging. We apply here particle swarm optimization algorithm that does not rely on the gradients of the fitness function to the design of a fiber 8-figure laser cavity. This technique allows us to determine the laser cavity architectures tailored to generating on demand pulses with duration in the range of 1.5-105 ps and spectral width in the interval 0.1-20.5 nm. The proposed design optimisation algorithm can be applied to a variety of laser applications, and, more generally, in a range of engineering systems with flexible adjustable configurations and the outputs on demand.
各种各样的激光应用通常需要具有特定特性的辐射,并且激光配置具有相对灵活性,这为设计具有按需参数的系统提供了前景。逆激光设计问题是找到能够产生所需激光输出的系统架构。然而,通常情况下,非线性系统的此类逆问题对目标(适应度)函数梯度的计算很敏感,使得直接反向传播方法具有挑战性。我们在此将不依赖适应度函数梯度的粒子群优化算法应用于光纤8字形激光腔的设计。该技术使我们能够确定为按需生成持续时间在1.5 - 105皮秒范围内且光谱宽度在0.1 - 20.5纳米区间的脉冲而量身定制的激光腔架构。所提出的设计优化算法可应用于各种激光应用,更广泛地说,可应用于一系列具有灵活可调配置和按需输出的工程系统。