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Electromagnetic Radiation Spectrum of a Composite System

机译:复合系统的电磁辐射谱

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摘要

In many physics fields, the radio emission of a composite system composed of a large number of randomly occurring but similar emission sources is encountered. In general, the composite system lasts longer than each individual component and individual source currents vary much more rapidly. This Letter presents a theory to understand the electromagnetic radiation spectrum of such a system. If the temporal distribution of the random occurrence of the component and the distribution to describe the relevant emission source properties are known, the spectrum of the composite system can be readily found from this theory. There are two main terms that define the spectrum: one term results from the coherent summation of the contributions from individual sources and is proportional to the square of the total number of the components in the system; the other term results from an incoherent summation and is proportional to the first power of that number. This can lead to drastically different spectral magnitudes in different spectral regions, typically with the spectral magnitude in the lower frequency region many orders of magnitude stronger than that in the higher frequency region.
机译:在许多物理领域,遇到由大量随机发生但类似的发射源组成的复合系统的无线电发射。通常,复合系统持续时间长于每个单独的组件,各个源电流变化得更快。这封信呈现了理解这种系统的电磁辐射谱的理论。如果已知组分的随机发生和分布的时间分布是已知的,则可以从该理论中容易地发现复合系统的光谱。有两种主要术语定义了频谱:一个术语来自各个来源的贡献的连贯总和,并且与系统中组件总数的平方成比例;另一个术语来自非连贯的求和,与该数量的第一个权力成比例。这可以导致不同光谱区域中的速度不同的光谱幅度,通常在较低频率区域中的频谱幅度比在较高频率区域中的许多级更强。

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  • 来源
    《Physical review letters》 |2020年第2期|025101.1-025101.6|共6页
  • 作者单位

    Univ New Hampshire Dept Phys & Astron Durham NH 03824 USA;

    Univ New Hampshire Dept Phys & Astron Durham NH 03824 USA;

    Univ New Hampshire Dept Phys & Astron Durham NH 03824 USA;

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  • 正文语种 eng
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