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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Freezing phase scheme for fast adaptive control and its application to characterization of femtosecond coherent optical pulses reflected from semiconductor saturable absorber mirrors
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Freezing phase scheme for fast adaptive control and its application to characterization of femtosecond coherent optical pulses reflected from semiconductor saturable absorber mirrors

机译:快速自适应控制的冻结相位方案及其在表征半导体可饱和吸收镜反射的飞秒相干光脉冲中的应用

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摘要

herent control with a femtosecond pulse shaper. The operational principle is based on a concept that the highest peak intensity will correspond to a frozen phase state of all spectral components involved in a coherent optical pulse. Our experimental and theoretical results reveal this new scheme to be fast and immune to the noise and laser power fluctuation. The freezing phase method has been used to investigate three types of semiconductor saturable absorber Bragg reflector (SBR). The optical pulses reflected from the SBR can be distorted in the spectral phase by a minor structural change of the SBR devices and can be clearly resolved with our method. The technique is useful for a variety of applications that require complete-field characterization and adaptive coherent control on the same setup. © 2005 Optical Society of America.
机译:用飞秒脉冲整形器进行继承控制。该工作原理基于以下概念:最高峰值强度将对应于相干光脉冲中涉及的所有光谱分量的冻结相位状态。我们的实验和理论结果表明,该新方案快速且不受噪声和激光功率波动的影响。冻结相法已用于研究三种类型的半导体可饱和吸收器布拉格反射器(SBR)。从SBR反射的光脉冲可能会由于SBR器件的微小结构变化而在光谱相位中失真,并且可以使用我们的方法清楚地解决。该技术对于需要在同一设置上进行完整场表征和自适应相干控制的各种应用很有用。 &复制; 2005年美国眼镜学会。

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