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Determining the time-frequency parameters of low-power bright picosecond optical pulses by using the interferometric technique

机译:利用干涉技术确定低功率亮皮秒光脉冲的时频参数

摘要

We present an approach to the characterization of low-power bright picosecond optical pulses with an internal frequency modulation simultaneously in both time and frequency domains in practically much used case of the Gaussian shape. This approach exploits the Wigner time-frequency distribution, which can be found for these bright pulses by using a novel interferometric technique under our proposal. Then, the simplest two-beam scanning Michelson interferometer is selected for shaping the field-strength auto-correlation function of low-power picosecond pulse trains. We are proposing and considering in principle the key features of a new 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. Such a procedure makes possible constructing the Wigner distribution and describing the above-listed time-frequency parameters of low-power bright picosecond optical pulses. In the appendix, we follow one of possible avenues for deriving the joint Wigner time-frequency distribution via choosing the Weil's correspondence between classical functions and operators. © 2008 Elsevier GmbH. All rights reserved.
机译:我们提出了一种在高斯形状的实际使用情况下同时在时域和频域中同时具有内部频率调制的低功率明亮皮秒光脉冲的表征方法。这种方法利用了维格纳(Wigner)时频分布,在我们的建议下,通过使用一种新颖的干涉技术,可以发现这些明亮的脉冲。然后,选择最简单的两束扫描迈克尔逊干涉仪来整形低功率皮秒脉冲序列的场强自相关函数。我们正在提议并原则上考虑一种新的实验技术的关键特征,该技术可以准确,可靠地测量火车平均宽度以及高重复频率火车中脉冲频率chi的值和符号。该技术基于用于高级计量的巧妙算法,假定使用经过特殊设计的辅助半导体电池,并建议在开发该半导体电池时执行一对额外的措施。这样的过程使得构造维格纳分布并描述上述低功率亮皮秒光脉冲的时频参数成为可能。在附录中,我们通过选择经典函数和算子之间的威尔对应关系,遵循一种可能的方法来推导联合的维格纳时频分布。 ©2008 Elsevier GmbH。版权所有。

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