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Time-resolved optical gating based on dispersive propagation: a new method to characterize optical pulses

机译:基于色散传播的时间分辨光学选通:表征光脉冲的新方法

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摘要

We introduce the technique of time-resolved optical gating (TROG) based on dispersive propagation (DP), a new noninterferometric method for characterizing ultrashort optical pulses in amplitude and phase without the need for a short optical gating pulse. TROG is similar to frequency-resolved optical gating except that the role of time and frequency is interchanged. For the DP-TROG geometry, we show that measurements of the autocorrelation trace of the pulse after propagation through a medium with variable dispersion together with a single measurement of its intensity spectrum contain sufficient information to reconstruct the pulse in amplitude and phase. Pulse reconstruction for this DP-TROG geometry works very well even for the case of a nonlinearly chirped double pulse. Compared with other methods, DP-TROG does not introduce an ambiguity in the direction of time for the pulse. Due to its simplicity and improved sensitivity, DP-TROG is expected to be useful in characterizing low-energy pulses.
机译:我们介绍了基于色散传播(DP)的时间分辨光学选通(TROG)技术,这是一种无需幅度短的光学选通脉冲即可表征幅度和相位的超短光学脉冲的新型非干涉方法。 TROG与频率分辨光学选通相似,除了时间和频率的作用互换。对于DP-TROG几何形状,我们表明在通过具有可变色散的介质传播之后,对脉冲的自相关迹线的测量以及其强度谱的单个测量都包含足够的信息来重构振幅和相位的脉冲。即使对于非线性chi双脉冲,这种DP-TROG几何形状的脉冲重建也可以很好地工作。与其他方法相比,DP-TROG在脉冲的时间方向上不会产生歧义。由于其简单性和更高的灵敏度,DP-TROG有望用于表征低能脉冲。

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  • 作者单位
  • 年度 2000
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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