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Diffraction effects in directed radiation beams

机译:定向辐射束的衍射效应

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Abstract: 1467_37A number of proposed applications of electromagnetic waves require that the radiation beam maintain a high intensity over an appreciable propagation distance. An example of this is the possibility of a power satellite providing electrical energy to a host of other satellites by means of directed radiation beams. This is referred to as power beaming. Another example is the possibility of accelerating particles to ultra-high energies by utilizing high-power laser beams. Other applications include advanced radar and directed-energy sources. The quest to achieve these objectives has led to a resurgence of research on propagation of radiation beams and diffraction theory. Diffraction causes a beam of radiation to spread out in the lateral direction and, from energy conservation, the intensity drops off correspondingly. Briefly, the objective of much of the research being carried out is: 'Can diffraction be overcome?' The authors present a survey and critique of the analyses and experimental tests of solutions of the wave equation in connection with so-called diffractionless and other directed radiation beams. The examples discussed include electromagnetic missiles, Bessel beams, electromagnetic directed energy pulse trains, and electromagnetic bullets.!
机译:摘要:1467_37A电磁波的许多建议应用要求辐射束在可观的传播距离上保持高强度。这样的一个例子是功率卫星通过定向辐射束将电能提供给其他许多卫星的可能性。这称为功率发射。另一个例子是通过利用高功率激光束将粒子加速到超高能量的可能性。其他应用包括高级雷达和定向能量源。对实现这些目标的追求导致了对辐射束传播和衍射理论的研究重新出现。衍射使辐射束沿横向散开,并且由于能量守恒,强度相应降低。简而言之,正在进行的许多研究的目的是:“可以克服衍射吗?”作者提出了与所谓的无衍射和其他定向辐射束有关的波动方程解的分析和实验测试的综述和评论。讨论的示例包括电磁导弹,贝塞尔光束,电磁有向能量脉冲序列和电磁子弹。

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