Ward Benjamin G
Laser and Optics Research Center, Department of Physics, United States Air Force Academy, 2354 Fairchild Drive Ste. 2A31, USAF Academy Colorado 80840, USA.
Opt Express. 2013 May 20;21(10):12053-67. doi: 10.1364/OE.21.012053.
A model of transient modal instability in fiber amplifiers is presented. This model combines an optical beam propagation method that incorporates laser gain through local solution of the rate equations and refractive index perturbations caused by the thermo-optic effect with a time-dependent thermal solver with a quantum defect heating source term. This model predicts modal instability a fiber amplifier operating at 241, 270, and 287 Watts of output power characterized by power coupling to un-seeded modes, the presence of stable and unstable regions within the fiber, and rapid intensity variations along the fiber. The instability becomes more severe as the power is increased.
提出了一种光纤放大器瞬态模态不稳定性模型。该模型将一种光束传播方法与一个具有量子缺陷热源项的随时间变化的热求解器相结合,其中光束传播方法通过速率方程的局部求解纳入激光增益,并考虑热光效应引起的折射率扰动。该模型预测了在输出功率为241瓦、270瓦和287瓦下运行的光纤放大器中的模态不稳定性,其特征为功率耦合到未注入种子光的模式、光纤内存在稳定和不稳定区域以及沿光纤的快速强度变化。随着功率增加,不稳定性变得更加严重。