Li Ti-Jian, Ma Gai-Ming, Liu Meng, Huang Qian-Qian, Cui Hu, Luo Ai-Ping, Mou Cheng-Bo, Xu Wen-Cheng, Luo Zhi-Chao
Opt Express. 2023 Nov 6;31(23):39250-39260. doi: 10.1364/OE.503522.
The Mamyshev oscillator (MO) is a promising platform to generate high-peak-power pulse with environmentally stable operation. However, rare efforts have been dedicated to unveil the dynamics from seed signal to oscillator pulse, particularly for the multi-pulse operation. Herein, we investigate the buildup dynamics of the oscillator pulse from the seed signal in a fiber MO. It is revealed that the gain competition among the successively injected seed pulses leads to higher pump power that is required to ignite the MO, hence resulting in the higher optical gain that supports buildup of multiple oscillator pulses. The multiple oscillator pulses are identified to be evolved from the multiple seed pulses. Moreover, the dispersive Fourier transform (DFT) technique is used to reveals the real-time spectral dynamics during the starting process. As a proof-of-concept demonstration, a highly intensity-modulated pulse bunch was employed as the seed signal to reduce the gain competition effect and avoid the multi-pulse starting operation. The experimental results are verified by numerical simulations. These findings would give new insights into the pulse dynamics in MO, which will be meaningful to the communities interested in ultrafast laser technologies and nonlinear optics.
马梅舍夫振荡器(MO)是一个很有前景的平台,可用于产生具有环境稳定运行特性的高峰值功率脉冲。然而,鲜有人致力于揭示从种子信号到振荡器脉冲的动力学过程,特别是对于多脉冲运行情况。在此,我们研究了光纤MO中从种子信号开始的振荡器脉冲的建立动力学。结果表明,连续注入的种子脉冲之间的增益竞争导致点燃MO所需的泵浦功率更高,从而产生更高的光学增益,支持多个振荡器脉冲的建立。多个振荡器脉冲被确定是从多个种子脉冲演化而来的。此外,色散傅里叶变换(DFT)技术被用于揭示启动过程中的实时光谱动力学。作为概念验证演示,使用了高强度调制脉冲串作为种子信号,以减少增益竞争效应并避免多脉冲启动操作。实验结果通过数值模拟得到验证。这些发现将为MO中的脉冲动力学提供新的见解,这对于对超快激光技术和非线性光学感兴趣的群体将具有重要意义。