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Numerical investigation on the cavity ring-down signal produced by a pulsed laser excitation of a Fabry-Perot cavity

机译:法布里-珀罗腔的脉冲激光激发产生的腔衰荡信号的数值研究

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In the presence of pulsed laser excitations, a Fabry-Perot cavity produces an optical signal transmission which decays out exponentially with a time rate proportional to the cavity loss. The signal is thus referred to as a ring-down signal and its feature provides a simple physical background for cavity ring-down spectroscopy (CRDS) to measure the ultralow absorption of a sample contained in the cavity. Numerical calculations are performed on temporal profile, intensity modulation behavior, and output coupling efficiency of the ring-down signal. The assumption made for the investigation is that a Fourier-transform-limited Gaussian laser pulse be injected to a stable empty cavity with complete mode-match to the lowest cavity transverse mode. It is found that the ring-down signal is generally superimposed by an inherent intensity modulation and a transient peak. The behavior dramatically changes depending on the excitation pulse duration and the cavity parameters such as the cavity free-spectral-range and the frequency detuning. Intuitive and straight forward time domain pictures are provided to allow understanding of the features in the context of time domain interference characterized by the amount of temporal overlap and the phase shift between the interfering fields. Also predicted is the superluminal transmission in a Fabry-Perot cavity which is confirmed by both the numerical calculation of the transmitted pulse profile in time domain and theoretical analysis based on the frequency domain description.
机译:在脉冲激光激发的情况下,法布里-珀罗腔会产生光信号传输,该信号以与腔损耗成正比的时间速率呈指数衰减。该信号因此被称为振铃信号,其特征为腔振铃光谱(CRDS)提供了简单的物理背景,以测量腔体中所含样品的超低吸收率。对时间分布,强度调制行为和振铃信号的输出耦合效率进行数值计算。进行调查的假设是将傅里叶变换限制的高斯激光脉冲注入到一个稳定的空腔中,该腔与最低腔的横向模完全匹配。已经发现,振铃信号通常被固有的强度调制和瞬态峰值所叠加。该行为根据激励脉冲持续时间和腔参数(例如腔自由光谱范围和频率失谐)而发生显着变化。提供直观直观的时域图片,以允许在时域干扰的情况下理解特征,这些干扰的特征在于时间重叠的量和干扰场之间的相移。还预测了法布里-珀罗腔中的超腔传输,这通过时域中传输脉冲轮廓的数值计算和基于频域描述的理论分析得到了证实。

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