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Chirp Multiplication by Four Wave Mixing for Wideband Swept-Frequency Sources for High Resolution Imaging

机译:四波混频的线性调频乘法用于高分辨率成像的宽带扫频源

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摘要

We present an analysis and demonstration of the doubling of the chirp rate and total chirp bandwidth of a frequency chirped optical signal by the process of four-wave mixing in a non-linear optical medium. The effects of chromatic dispersion and input power on the maximum achievable output bandwidth are analyzed, and a dispersion compensation technique for phase matching is described. The doubling of an input linear frequency sweep of 100 GHz/1 ms in a highly nonlinear optical fiber is experimentally demonstrated. Further, it is proposed that a cascaded implementation of the four-wave mixing process leads to a geometric increase in the bandwidth of the frequency chirp. With an electronically tuned chirped laser at the input stage, this process can be used to generate extremely wideband swept frequency sources with no moving parts, for applications in high-speed and high-resolution optical imaging and spectroscopy.
机译:我们通过非线性光学介质中的四波混合过程,对频率a光信号的线性调频率和总线性调频带宽加倍进行了分析和演示。分析了色散和输入功率对最大可实现输出带宽的影响,并描述了一种用于相位匹配的色散补偿技术。实验证明了高度非线性光纤中100 GHz / 1 ms的输入线性频率扫描的倍增。此外,提出四波混合过程的级联实施导致频率线性调频带宽的几何增加。在输入级使用电子调谐的laser激光器,此过程可用于生成没有移动部件的超宽带扫频源,用于高速和高分辨率光学成像和光谱学。

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