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Highly sensitive direct characterization of femtosecond pulses by electro-optic spectral shearing interferometry

机译:飞秒脉冲通过电光光谱剪切干涉法的高灵敏度直接表征

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We report what is to our knowledge the first experimental demonstration of spectral shearing interferometry by use of an electro-optic temporal phase modulator to generate the spectral shear. This approach achieves far better sensitivity than nonlinear optical pulse characterization techniques, including other versions of spectral shearing interferometry. Temporal phase modulation is conceptually simple and is implemented easily with telecommunication components. The technique is versatile, and a wide range of pulse durations can be measured with minimal changes in the setup. We demonstrate the accurate characterization of a 156-MHz train of 1540-nm pulses with durations ranging from 750 fs to more than 30 ps after various amounts of chirping, at average powers below 1 μW.
机译:我们报告我们所知,通过使用电光时相调制器产生频谱剪切,进行频谱剪切干涉术的第一个实验演示。与非线性光脉冲表征技术(包括其他形式的频谱剪切干涉术)相比,该方法可实现更好的灵敏度。时间相位调制在概念上很简单,并且可以通过电信组件轻松实现。该技术用途广泛,可以在设置变化最小的情况下测量宽范围的脉冲持续时间。我们演示了在各种amounts声之后,平均功率低于1μW的156 MHz的1540 nm脉冲序列的准确特征,持续时间从750 fs到30 ps以上。

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