首页> 外文会议>Conference on Photonic Crystal Materials and Devices Jan 28-30, 2003 San Jose, California, USA >Spectral structure and stability studies of microstructure-fiber continuum
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Spectral structure and stability studies of microstructure-fiber continuum

机译:微结构-纤维连续体的光谱结构和稳定性研究

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Although previous direct measurements of the microstructure-fiber continuum have all showed a smooth and stable spectrum, our cross-correlation frequency-resolved optical gating (XFROG) full-intensity-and-phase characterization of the continuum pulse, utilizing sum-frequency-generation with a pre-characterized reference pulse and the angle-dithered-crystal technique, indicates that fine-scale spectral structure exists on a single-shot basis, contrary to previous observations. In particular, deep and fine oscillations are found in the retrieved spectrum, and the retrieved trace contains a "measles" pattern, whereas the measured trace and the independently-measured spectrum are rather smooth. The discrepancy is shown to be the result of unstable single-shot spectral structure. Although the XFROG measurement is not able to directly measure the single-shot fine structure in the trace, the redundancy of information in FROG traces enables the retrieval algorithm to correctly recognize the existence of the spectral fine structure, and restore the structure in the retrieved trace and spectrum. Numerical simulations have supported our hypothesis, and we directly observed the fine spectral structure in single-shot measurements of the continuum spectrum and the structure was seen to be highly unstable, the continuum spectrum appearing smooth only when many shots are averaged. Despite the structure and instability in the continuum spectrum, coherence experiments also reveal that the spectral phase is rather stable, being able to produce well-defined spectral fringes across the entire continuum bandwidth.
机译:尽管先前对微结构纤维连续体的直接测量都显示出平滑且稳定的光谱,但我们利用相加频率生成技术对连续体脉冲进行互相关频率分辨光学选通(XFROG)全强度和相位表征与预先表征的参考脉冲和角度抖动晶体技术一起使用时,表明与以前的观察相反,精细光谱结构是单次存在的。特别是,在检索到的光谱中发现了深振动和精细振动,并且检索到的迹线包含“麻疹”图案,而测得的迹线和独立测量的光谱则相当平滑。结果表明,这种差异是不稳定的单发光谱结构的结果。尽管XFROG测量不能直接测量轨迹中的单次精细结构,但是FROG轨迹中信息的冗余性使检索算法能够正确识别光谱精细结构的存在,并在检索到的轨迹中恢复结构和频谱。数值模拟支持了我们的假设,并且我们在连续光谱的单次测量中直接观察到了精细的光谱结构,并且该结构被认为是高度不稳定的,仅当平均多次注射后,连续光谱才显得平滑。尽管连续谱的结构和不稳定性,相干实验还显示出谱相位相当稳定,能够在整个连续谱带宽上产生清晰的谱条纹。

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