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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Simulations of frequency-resolved optical gating for measuring very complex pulses
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Simulations of frequency-resolved optical gating for measuring very complex pulses

机译:用于测量非常复杂的脉冲的频率分辨光学选通的仿真

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摘要

Frequency-resolved optical gating (FROG) and its variations are the only techniques available for measuring complex pulses without a well-characterized reference pulse. We study the performance of the FROG generalized-projections algorithm for retrieving the intensity and phase of very complex ultrashort laser pulses [with time-bandwidth products (TBPs) of up to 1001 in the presence of noise. We compare the performance of three versions of FROG: second-harmonic-generation (SHG) FROG, polarization-gate (PG) FROG, and cross-correlation FROG (XFROG), the last of which requires a well-characterized reference pulse. We found that the XFROG algorithm converged in all cases on the first initial guess. The PG FROG algorithm converged for all moderately complex pulses, for 99% of the pulses we tried, and for more than 95% of even the most complex pulses (TBP similar to 100). The SHG FROG algorithm converged for 95% of the pulses we tried and for over 80% of even the most complex pulses. We found no additional ambiguities in any of these techniques. (C) 2008 Optical Society of America.
机译:频率分辨光学选通(FROG)及其变化形式是可用于在没有充分表征的参考脉冲的情况下测量复杂脉冲的唯一技术。我们研究了FROG广义投影算法的性能,该算法用于在噪声存在的情况下检索非常复杂的超短激光脉冲[具有高达1001的时间带宽积(TBP)的强度和相位]。我们比较了三种FROG的性能:二次谐波(SHG)FROG,偏振门(PG)FROG和互相关FROG(XFROG),它们中的最后一个需要特征明确的参考脉冲。我们发现XFROG算法在所有初始情况下都在所有情况下收敛。 PG FROG算法针对所有中等复杂的脉冲,我们尝试的99%的脉冲以及甚至超过95%的最复杂的脉冲(TBP类似于100)都进行了收敛。 SHG FROG算法收敛了我们尝试的95%的脉冲,甚至超过了80%的最复杂的脉冲。我们在这些技术中均未发现其他歧义。 (C)2008年美国眼镜学会。

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