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METHOD OF MEASURING SPATIAL-TEMPORAL RADIATION EVOLUTION

机译:测量时空辐射演化的方法

摘要

FIELD: optics.;SUBSTANCE: invention relates to methods of high-resolution spectroscopy and space-time analysis of optical radiation with a complex structure and relatively rapid evolution. It can be used in scientific and applied researches of laser systems, including distributed laser data transmission systems, as well as partially coherent and unstable laser sources, in particular, with long resonators and mode synchronization. Proposed is a method for high-resolution spatial-temporal spectroscopy of complex multicomponent radiation, including recording measurements of the intensity of an input signal in real time and application of special spectral transformations using frequency-spectral analysis of the obtained spectral and spatial-temporal data for visual or automatic detection in radiation of repeating structures and their development over time.;EFFECT: method allows to separate signal components, having identical group velocity, to identify stable radiation structures of complex, and especially partially-coherent systems, in which several structures can co-exist simultaneously and move relative to each other with different group velocities, and also do this in the presence of noise with the possibility of introducing feedback on the system under study to correct its parameters.;1 cl, 5 dwg
机译:技术领域本发明涉及具有复杂结构和相对快速发展的光辐射的高分辨率光谱学和时空分析的方法。它可以用于激光系统的科学研究和应用研究,包括分布式激光数据传输系统,以及部分相干和不稳定的激光源,特别是具有长谐振器和模式同步的激光源。提出了一种用于复杂多分量辐射的高分辨率时空光谱的方法,包括实时记录输入信号的强度的测量以及使用所获得的光谱和时空数据的频谱分析来应用特殊的光谱变换。目视或自动检测重复结构的辐射及其随时间的发展。效果:该方法可以分离具有相同群速度的信号分量,以识别复杂的,尤其是部分相干系统的稳定辐射结构,其中多个结构可以同时共存并以不同的速度彼此相对移动,并且还可以在存在噪声的情况下执行此操作,并有可能在研究中的系统上引入反馈以校正其参数。1cl,5 dwg

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