超短光脉冲的光谱相位表征

Christophe Dorrer , Manuel Joffre
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引用次数: 24

摘要

对短光脉冲的完整表征需要测量电场的值作为时间的函数,或者反过来,作为光频率的函数。为此目的已经演示了许多不同的技术。它们主要分为两类,即已知参考脉冲的频谱是否包含未知脉冲的频谱。在第一种情况下,线性技术,如时域或频域干涉测量可以直接使用,具有高灵敏度的优势。在后一种情况下,非平稳滤波器可以使用光学非线性来实现,如频率分辨光门控(FROG)或直接电场重建的光谱相位干涉测量(SPIDER)技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of the spectral phase of ultrashort light pulses

The complete characterization of a short light pulse requires the measurement of the value of the electric field as a function of time, or conversely, as a function of the optical frequency. Many different techniques have been demonstrated for this purpose. They fall in two main categories, whether a known reference pulse whose spectrum encompasses that of the unknown pulse is available or not. In the first case, linear techniques such as time-domain or frequency-domain interferometry can be directly used, with the advantage of a high sensitivity. In the latter case, non-stationary filters can be implemented using optical non-linearities, in techniques such as Frequency Resolved Optical Gating (FROG) or Spectral Phase Interferometry for Direct Electric-field Reconstruction (SPIDER).

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