Xu Zishuo, Huang Qianqian, Tian Haochen, Huang Zinan, Dai Lilong, Yan Kaiquan, Song Youjian, Mou Chengbo
Opt Lett. 2023 Oct 15;48(20):5395-5398. doi: 10.1364/OL.504246.
We show that an optimum mode-locking state with low relative intensity noise (RIN) can be identified by continuous broadening of an optical spectrum in a stretched-pulse fiber laser based on nonlinear polarization rotation (NPR). Under the premise of keeping the overall spectral shape unchanged, either gradually increasing the pump power or unidirectionally adjusting the polarization controller (PC) can effectively reduce RIN as the optical spectral bandwidth broadens. The optimized intensity noise performance of the laser can be attributed to the increased pulse energy and reduced intra-cavity net dispersion. Moreover, the integrated RIN will further decrease as the maximum 3-dB bandwidth extends. In our experiment, the detected minimum integrated rms RIN is below 0.003% (from 100 Hz to 100 kHz). Our experimental results find that the absolute spectral width is not a necessary key condition for obtaining low RIN mode-locked laser, whereas it may help understand and design versatile low-noise ultrafast laser sources.
我们表明,基于非线性偏振旋转(NPR)的拉伸脉冲光纤激光器中,通过连续展宽光谱可识别出具有低相对强度噪声(RIN)的最佳锁模状态。在保持整体光谱形状不变的前提下,逐渐增加泵浦功率或单向调整偏振控制器(PC),随着光谱带宽展宽,均可有效降低RIN。激光器优化后的强度噪声性能可归因于脉冲能量增加和腔内净色散减小。此外,随着最大3dB带宽扩展,积分RIN将进一步降低。在我们的实验中,检测到的最小积分均方根RIN低于0.003%(从100Hz至100kHz)。我们的实验结果表明,绝对光谱宽度并非获得低RIN锁模激光器的必要关键条件,不过它可能有助于理解和设计通用的低噪声超快激光源。