Lüpken Niklas M, Würthwein Thomas, Boller Klaus-J, Fallnich Carsten
Opt Express. 2021 Mar 29;29(7):10424-10433. doi: 10.1364/OE.418052.
We present tunable waveguide-based optical parametric amplification by four-wave mixing (FWM) in silicon nitride waveguides, with the potential to be set up as an all-integrated device, for narrowband coherent anti-Stokes Raman scattering (CARS) imaging. Signal and idler pulses are generated via FWM with only 3 nJ pump pulse energy and stimulated by using only 4 mW of a continuous-wave seed source, resulting in a 35 dB enhancement of the idler spectral power density in comparison to spontaneous FWM. By using waveguides with different widths and tuning the wavelength of the signal wave seed, idler wavelengths covering the spectral region from 1.1 µm up to 1.6 µm can be generated. The versatility of the chip-based FWM light source is demonstrated by acquiring CARS images.
我们展示了基于氮化硅波导的可调谐四波混频(FWM)光学参量放大,它有潜力被构建为一种全集成设备,用于窄带相干反斯托克斯拉曼散射(CARS)成像。信号脉冲和闲频脉冲通过四波混频产生,泵浦脉冲能量仅为3 nJ,并且仅使用4 mW的连续波种子源进行激发,与自发四波混频相比,闲频谱功率密度提高了35 dB。通过使用不同宽度的波导并调谐信号波种子的波长,可以产生覆盖从1.1 µm到1.6 µm光谱区域的闲频波长。基于芯片的四波混频光源的多功能性通过获取CARS图像得到了证明。