Paul Aritra, Krishnamurthy Pradeep Kumar
Appl Opt. 2022 Oct 10;61(29):8799-8805. doi: 10.1364/AO.470532.
We describe an all-stimulated Brillouin scattering (SBS) fiber-based setup for the generation, amplification, and isolation of frequency components from an optical frequency comb (OFC). The cascaded SBS-OFC is obtained by utilizing pump and Stokes power recycling techniques. A total of >15 comb lines within a 45 dB bandwidth, having an average power of 16 dBm, is observed in the 1550 nm wavelength region of operation. By implementing a polarizer-analyzer setup exploiting the weak birefringence in silica fibers, we amplified and isolated the first Stokes component of the generated comb. The isolated component at 1550.03 nm was amplified by ≈55. In order to verify the isolation of a single comb line, the SBS-OFC is intensity modulated using sinusoidal signals of different frequencies, and the modulation is detected after the comb line isolation. We also observe that with the increase in Brillouin pump power during comb line isolation, the spontaneous Brillouin noise acts as a limitation to the selective amplification process.
我们描述了一种基于全受激布里渊散射(SBS)光纤的装置,用于从光学频率梳(OFC)中产生、放大和隔离频率成分。通过利用泵浦和斯托克斯功率回收技术获得级联SBS - OFC。在1550 nm工作波长区域观察到,在45 dB带宽内共有超过15条梳状线,平均功率为16 dBm。通过利用二氧化硅光纤中的弱双折射实现偏振器 - 分析器装置,我们对产生的频率梳的第一斯托克斯分量进行了放大和隔离。在1550.03 nm处隔离的分量被放大了约55倍。为了验证单个梳状线的隔离,使用不同频率的正弦信号对SBS - OFC进行强度调制,并在梳状线隔离后检测调制情况。我们还观察到,在梳状线隔离期间,随着布里渊泵浦功率的增加,自发布里渊噪声对选择性放大过程起到了限制作用。