Applied Optics · 2007 · 118 citations · 10 references
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.
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High-speed optical frequency-domain imaging
Seok‐Hyun Yun, G. J. Tearney, Johannes F. de Boer et al. · Optics Express · 2003 · 855 citations · Full text
Simple high-coherence rapidly tunable external-cavity diode laser
B. Boggs, C. Greiner, T. Wang et al. · Optics Letters · 1998 · 43 citations
Coherence Measurements, Photonics, Simple High-coherence +15