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A new technique of measuring low-power picosecond optical pulse trains

机译:一种测量低功耗皮秒光脉冲列车的新技术

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We present a theoretic approach to the characterization of low-power bright ultrashort optical pulses with an internal frequency modulation simultaneously in both time and frequency domains. This approach exploits the Wigner time-frequency distribution, which can be determined and developed for these bright optical pulses by using a novel interferometric technique under our proposal. At first, the analysis and computer simulations are applied to studying the capability of Wigner distribution to characterize solitary pulses in practically important case of the sech-pulses. Then, the simplest two-beam scanning Michelson interferometer is selected for shaping the field-strength autocorrelation function of low-power picosecond pulse trains. We are proposing the key features of a new interferometric experimental technique for accurate and reliable measurements of the train-average width as well as the value and sign of the frequency chirp of pulses in high-repetition-rate trains. This technique is founded on an ingenious algorithm for the advanced metrology, assumes using a specially designed supplementary semiconductor cell, and suggests carrying out a pair of additional measures with exploiting this semiconductor cell. The procedure makes it possible to construct the Wigner distribution and to describe the time-frequency parameters of low-power bright picosecond optical pulses.
机译:我们在时间和频率域中同时具有内部频率调制的低功率明亮超微光脉冲的理论方法。该方法利用了可靠的时间频率分布,这可以通过在我们的提案下使用新颖的干涉技术来确定和开发这些明亮的光学脉冲。首先,应用分析和计算机模拟来研究Wigner分布的能力,以在SECH脉冲的实际重要情况下在实际重要的情况下表征孤立脉冲的能力。然后,选择最简单的双光束扫描Michelson干涉仪,用于塑造低功耗PicoSecond脉冲列车的场强自相关函数。我们提出了一种新的干涉式实验技术的关键特征,用于准确可靠地测量火车平均宽度以及高重复率列车中脉冲频率啁啾的值和标志。该技术成立于巧妙的高级计量算法,假设使用专门设计的补充半导体电池,并建议利用该半导体电池进行一对额外的措施。该程序使得可以构建Wigner分布并描述低功率明亮皮秒光学脉冲的时频参数。

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