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基于时间波带片的线性光脉冲压缩

Linear optical pulse compression based on temporal zone plates.

作者信息

Li Bo, Li Ming, Lou Shuqin, Azaña José

机构信息

Institut National de la Recherche Scientifique – Energie, Matériaux et Télécommunications, Montréal, Québec H5A 1K6, Canada.

出版信息

Opt Express. 2013 Jul 15;21(14):16814-30. doi: 10.1364/OE.21.016814.

Abstract

We propose and demonstrate time-domain equivalents of spatial zone plates, namely temporal zone plates, as alternatives to conventional time lenses. Both temporal intensity zone plates, based on intensity-only temporal modulation, and temporal phase zone plates, based on phase-only temporal modulation, are introduced and studied. Temporal zone plates do not exhibit the limiting tradeoff between temporal aperture and frequency bandwidth (temporal resolution) of conventional linear time lenses. As a result, these zone plates can be ideally designed to offer a time-bandwidth product (TBP) as large as desired, practically limited by the achievable temporal modulation bandwidth (limiting the temporal resolution) and the amount of dispersion needed in the target processing systems (limiting the temporal aperture). We numerically and experimentally demonstrate linear optical pulse compression by using temporal zone plates based on linear electro-optic temporal modulation followed by fiber-optics dispersion. In the pulse-compression experiment based on temporal phase zone plates, we achieve a resolution of ~25.5 ps over a temporal aperture of ~5.77 ns, representing an experimental TBP larger than 226 using a phase-modulation amplitude of only ~0.8π rad. We also numerically study the potential of these devices to achieve temporal imaging of optical waveforms and present a comparative analysis on the performance of different temporal intensity and phase zone plates.

摘要

我们提出并演示了空间波带片的时域等效物,即时域波带片,作为传统时间透镜的替代方案。我们介绍并研究了基于仅强度时域调制的时域强度波带片和基于仅相位时域调制的时域相位波带片。时域波带片不存在传统线性时间透镜在时域孔径和频率带宽(时间分辨率)之间的极限权衡。因此,这些波带片可以被理想地设计为提供所需的大时间带宽积(TBP),实际上受限于可实现的时域调制带宽(限制时间分辨率)和目标处理系统所需的色散量(限制时域孔径)。我们通过使用基于线性电光时域调制随后进行光纤色散的时域波带片,在数值和实验上演示了线性光脉冲压缩。在基于时域相位波带片的脉冲压缩实验中,我们在约5.77 ns的时域孔径上实现了约25.5 ps的分辨率,使用仅约0.8π rad的相位调制幅度,代表了大于226的实验TBP。我们还在数值上研究了这些器件实现光波形时域成像的潜力,并对不同时域强度和相位波带片的性能进行了比较分析。

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