Opt Lett. 2023 Jul 15;48(14):3713-3716. doi: 10.1364/OL.488181.
Four-wave mixing (FWM) enables the generation and amplification of light in spectral regions where suitable fiber gain media are unavailable. The 1300 nm and 900 nm regions are of especially high interest for time-encoded (TICO) stimulated Raman scattering microscopy and spectro-temporal laser imaging by diffracted excitation (SLIDE) two-photon microscopy. We present a new, to the best of our knowledge, FWM setup where we shift the power of a home-built fully fiber-based master oscillator power amplifier (MOPA) at 1064 nm to the 1300-nm region of a rapidly wavelength-sweeping Fourier domain mode-locked (FDML) laser in a photonic crystal fiber (PCF) creating pulses in the 900-nm region. The resulting 900-nm light can be wavelength swept over 54 nm and has up to 2.5 kW (0.2 µJ) peak power and a narrow instantaneous spectral linewidth of 70 pm. The arbitrary pulse patterns of the MOPA and the fast wavelength tuning of the FDML laser (419 kHz) allow it to rapidly tune the FWM light enabling new and faster TICO-Raman microscopy, SLIDE imaging, and other applications.
四波混频(FWM)可在缺乏合适光纤增益介质的光谱区域中产生和放大光。1300nm 和 900nm 区域特别适合时间编码(TICO)受激拉曼散射显微镜和通过衍射激发的光谱时间分辨激光成像(SLIDE)双光子显微镜。我们提出了一种新的 FWM 装置,该装置将我们自制的全光纤主振荡器功率放大器(MOPA)在 1064nm 的功率转移到光子晶体光纤(PCF)中的快速波长扫描傅里叶域模式锁定(FDML)激光的 1300nm 区域,在 900nm 区域中产生脉冲。产生的 900nm 光可以在 54nm 范围内进行波长扫描,峰值功率高达 2.5kW(0.2μJ),瞬时光谱线宽窄至 70pm。MOPA 的任意脉冲模式和 FDML 激光的快速波长调谐(419kHz)使其能够快速调谐 FWM 光,从而实现新的和更快的 TICO-Raman 显微镜、SLIDE 成像和其他应用。