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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Nonlinear stabilization of high-energy and ultrashort pulses in passively modelocked lasers
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Nonlinear stabilization of high-energy and ultrashort pulses in passively modelocked lasers

机译:在被动模型激光器中的高能和超短脉冲的非线性稳定

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摘要

The two most commonly used models for passively modelocked lasers with fast saturable absorbers are the Haus modelocking equation (HME) and the cubic-quintic modelocking equation (CQME). The HME predicts an instability threshold that is unrealistically pessimistic. We use singular perturbation theory to demonstrate that the CQME has a stable high-energy solution for an arbitrarily small but nonzero quintic contribution to the fast saturable absorber. As a consequence, we find that the CQME predicts the existence of stable modelocked pulses when the cubic nonlinearity is orders of magnitude larger than the value at which the HME predicts that modelocked pulses become unstable. Our results suggest a possible path to obtain high-energy and ultrashort pulses by fine tuning the higher-order nonlinear terms in the fast saturable absorber. (C) 2016 Optical Society of America
机译:具有快速可饱和吸收器的被动模型激光器的两个最常用的模型是Haus造型等式(HME)和立方 - 型型号(CQME)。 HME预测不稳定阈值,这是不切实际的悲观。 我们使用奇异的扰动理论来证明CQME具有稳定的高能量解决方案,用于任意小但非零的二聚石对快速饱和吸收剂的贡献。 结果,我们发现CQME当立方非线性是大于HME预测所造型脉冲变得不稳定的数量的数量级时,CQME预测稳定的型号脉冲的存在。 我们的结果表明,通过微调快速可饱和吸收器中的高阶非线性术语,可以通过微调高能和超短脉冲来获得高能和超短脉冲的可能路径。 (c)2016年美国光学学会

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