Opt Lett. 2019 Jan 15;44(2):291-294. doi: 10.1364/OL.44.000291.
We present a novel light source specifically tailored for stimulated Raman scattering-spectroscopic optical coherence tomography (SRS-SOCT), which is, to the best of our knowledge, a novel molecular imaging method that combines the molecular sensitivity of SRS with the spatial and spectral multiplexing capabilities of SOCT. The novel laser consists of an 8 W, 450 fs Yb:KGW oscillator, with a repetition rate of 40 MHz, which delivers the Stokes beam for SRS-SOCT and also pumps and amplifies an optical parametric oscillator (OPO). The output of the amplified OPO is then frequency doubled and coherently broadened using a custom-made tapered fiber that generates bandwidth pulses >40 nm, compressible to <50 fs, with the average power over 150 mW, near the shot-noise limit above 250 kHz. The broadened and compressed pulse simultaneously serves as the pump beam and SOCT light source for SRS-SOCT. This light source is assessed for SRS-SOCT, and its implications for other imaging methods are discussed.
我们提出了一种专门为受激拉曼散射光谱相干断层扫描(SRS-SOCT)设计的新型光源,据我们所知,这是一种将 SRS 的分子灵敏度与 SOCT 的空间和光谱复用能力相结合的新型分子成像方法。新型激光器由 8 W、450 fs Yb:KGW 振荡器组成,重复频率为 40 MHz,它提供 SRS-SOCT 的斯托克斯光束,同时还泵浦和放大光学参量振荡器(OPO)。放大后的 OPO 输出然后使用定制的锥形光纤进行倍频和相干展宽,该光纤可产生带宽脉冲 >40 nm,压缩到 <50 fs,平均功率超过 150 mW,在 250 kHz 以上接近散粒噪声极限。展宽和压缩的脉冲同时用作 SRS-SOCT 的泵浦光束和 SOCT 光源。我们对这种光源进行了 SRS-SOCT 评估,并讨论了其对其他成像方法的影响。