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Space-time profiles of shaped ultrafast optical waveforms

机译:成形的超快光波形的时空分布

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摘要

A derivation of the space-time profiles of ultrafast optical waveforms shaped by filtering of spatially separated frequency components is presented. Closed form expressions for the space-time impulse response functions are given for the cases of single and double passes through a pulse shaping apparatus. For a single pass and a short unshaped pulse, diffraction by the mask filter gives rise to a translational spatial shift in the desired electric field profile that varies linearly with time along the shaped waveform. This result is completely general, and applies to frequency-domain pulse shaping with either continuous or discrete mask filters. It is also shown that double passing the apparatus does not generally reverse this effect but rather introduces further space-time coupling such as a time-varying spotsize. Examples of specific mask patterns are presented and implications for the generation of high-fidelity shaped optical waveforms are discussed.
机译:提出了通过对空间分离的频率分量进行滤波而形成的超快光波形的时空分布图的推导。对于单次和两次通过脉冲整形设备的情况,给出了时空脉冲响应函数的闭式表达式。对于单次通过和短的未整形脉冲,掩模滤波器的衍射会导致所需电场分布中的平移空间位移,该空间位移沿着整形波形随时间线性变化。该结果是完全通用的,适用于使用连续或离散掩模滤波器的频域脉冲整形。还显示出设备的两次通过通常不会逆转这种效果,而是会引入进一步的时空耦合,例如随时间变化的斑点大小。给出了特定掩模图案的示例,并讨论了生成高保真形状的光学波形的含义。

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