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Analysis of nonlinear frequency sweep in high-speed tunable laser sources using a self-homodyne measurement and Hilbert transformation

机译:使用自同调测量和希尔伯特变换分析高速可调谐激光源中的非线性频率扫描

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摘要

We have proposed and demonstrated a novel measurement technique for characterizing nonlinear frequency sweep in high-speed tunable laser sources by using a simple self-homodyne setup and Hilbert transformation. Measurement results, such as the variation in frequency scanning rate during a frequency sweeping process, are presented for a temperature-tuned distributed feedback laser diode and external cavity tunable laser. The time-varying optical phase of the incident light of a laser is calculated from the integration of the instantaneous optical frequency, and the tuning rate is obtained from its derivative.
机译:我们已经提出并演示了一种新颖的测量技术,该技术可通过使用简单的自谐调设置和希尔伯特变换来表征高速可调谐激光源中的非线性频率扫描。给出了温度调谐分布式反馈激光二极管和外腔可调激光器的测量结果,例如在扫频过程中频率扫描速率的变化。根据瞬时光频率的积分计算出激光入射光的时变光学相位,并从其导数获得调谐速率。

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