Pandiri Kanaka Raju, Suzuki Takayuki, Suda Akira, Midorikawa Katsumi, Katsuragawa Masayuki
Department of Applied Physics and Chemistry, University of Electro-Communications, Chofu-Shi, Tokyo, Japan.
Opt Express. 2010 Jan 18;18(2):732-9. doi: 10.1364/OE.18.000732.
We report line-by-line control of a coherent discrete spectrum (Raman sidebands) with a frequency spacing of 10.6 THz that is produced by an adiabatic Raman process. We show that the spectral phase of the Raman sidebands is finely controlled to the target (flat relative-spectral-phase). This is achieved by employing a combination of a spatial phase controller and a spectral interferometer, which are specifically designed for a high-power discrete spectrum. We also show that such spectral-phase control produces a train of Fourier transform limited pulses with an ultrahigh repetition rate of 10.6 THz in the time domain.
我们报告了对相干离散光谱(拉曼边带)的逐行控制,该光谱由绝热拉曼过程产生,频率间隔为10.6太赫兹。我们表明,拉曼边带的光谱相位被精确控制到目标(平坦的相对光谱相位)。这是通过结合使用空间相位控制器和光谱干涉仪来实现的,它们是专门为高功率离散光谱设计的。我们还表明,这种光谱相位控制在时域中产生了一列傅里叶变换受限脉冲,其重复率高达10.6太赫兹。