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Real-time high-resolution heterodyne-based measurements of spectral dynamics in fibre lasers

机译:基于高分辨率外差的光纤激光器光谱动力学实时测量

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摘要

Conventional tools for measurement of laser spectra (e.g. optical spectrum analysers) capture data averaged over a considerable time period. However, the generation spectrum of many laser types may involve spectral dynamics whose relatively fast time scale is determined by their cavity round trip period, calling for instrumentation featuring both high temporal and spectral resolution. Such real-time spectral characterisation becomes particularly challenging if the laser pulses are long, or they have continuous or quasi-continuous wave radiation components. Here we combine optical heterodyning with a technique of spatiooral intensity measurements that allows the characterisation of such complex sources. Fast, round-trip-resolved spectral dynamics of cavity-based systems in real-time are obtained, with temporal resolution of one cavity round trip and frequency resolution defined by its inverse (85 ns and 24 MHz respectively are demonstrated). We also show how under certain conditions for quasi-continuous wave sources, the spectral resolution could be further increased by a factor of 100 by direct extraction of phase information from the heterodyned dynamics or by using double time scales within the spectrogram approach.
机译:用于测量激光光谱的常规工具(例如,光谱分析仪)捕获相当长的时间段内的平均数据。但是,许多激光类型的产生光谱可能涉及光谱动力学,其相对较快的时间尺度由其腔体往返周期确定,因此需要具有高时间分辨率和光谱分辨率的仪器。如果激光脉冲很长,或者它们具有连续或准连续的波辐射分量,则这种实时光谱表征将变得特别具有挑战性。在这里,我们将光学外差与空间强度测量技术相结合,该技术可以表征这种复杂的光源。获得了基于腔的系统的实时快速,往返解析的光谱动力学,具有一个腔往返的时间分辨率和由其倒数定义的频率分辨率(分别显示了85 ns和24 MHz)。我们还展示了在某些情况下对于准连续波源,如何通过直接从杂色动力学中提取相位信息或在频谱图方法中使用双倍的时间尺度,可以将光谱分辨率进一步提高100倍。

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