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Single-Shot Measurement of Temporally-Dependent Polarization State of Femtosecond Pulses by Angle-Multiplexed Spectral-Spatial Interferometry

机译:飞秒脉冲的时间相关偏振态的单次测量采用角度复用光谱空间干涉法

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摘要

We demonstrate that temporally-dependent polarization states of ultrashort laser pulses can be reconstructed in a single shot by use of an angle-multiplexed spatial-spectral interferometry. This is achieved by introducing two orthogonally polarized reference pulses and interfering them with an arbitrarily polarized ultrafast pulse under measurement. A unique calibration procedure is developed for this technique which facilitates the subsequent polarization state measurements. The accuracy of several reconstructed polarization states is verified by comparison with that obtained from an analytic model that predicts the polarization state on the basis of its method of production. Laser pulses with mJ-level energies were characterized via this technique, including a time-dependent polarization state that can be used for polarization-gating of high-harmonic generation for production of attosecond pulses.
机译:我们证明,可以通过使用角度多路复用的空间光谱干涉术在一次拍摄中重建超短激光脉冲的时间相关偏振态。这是通过引入两个正交极化的参考脉冲并在测量中干扰任意极化的超快脉冲来实现的。为此技术开发了一种独特的校准程序,该校准程序有助于后续的偏振态测量。通过与根据解析模型根据其生产方法预测极化状态的分析模型进行比较,验证了几种重构极化状态的准确性。通过这种技术对具有mJ级能量的激光脉冲进行了表征,包括随时间变化的偏振态,该偏振态可用于高谐波产生的偏振门控,以产生阿秒脉冲。

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