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Self-referencing spectral interferometry for measuring ultrashort optical pulses

机译:自参考光谱干涉仪,用于测量超短光脉冲

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This paper describes a novel self-referencing interferometric method for measuring the time-dependent intensity and phase of ultrashort optical pulses. The technique, spectral phase interferometry for direct electric-field reconstruction (SPIDER), measures the interference between a pair of spectrally sheared replicas of the input pulse. Direct (noniterative) inversion of the interferogram yields the electric field of the input pulse without ambiguity. The interferogram, which is solely a function of frequency, is resolved with a spectrometer and recorded with a slow detector. Moreover, the geometry is entirely collinear and requires no moving components. This paper describes in detail the principle of operation, apparatus, and calibration of SPIDER and gives experimental examples of reconstructed pulses.
机译:本文介绍了一种新型的自参考干涉测量方法,该方法用于测量随时间变化的强度和超短光脉冲的相位。用于直接电场重建的光谱相位干涉测量技术(SPIDER),用于测量输入脉冲的一对光谱剪切副本之间的干扰。干涉图的直接(迭代)反演会产生输入脉冲的电场而不会产生歧义。干涉图仅是频率的函数,可通过光谱仪进行解析,并使用慢速检测器进行记录。此外,几何形状是完全共线的,不需要移动的组件。本文详细介绍了SPIDER的工作原理,设备和校准,并给出了重建脉冲的实验示例。

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