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Using Huygens Multipole Arrays to Realize Unidirectional Needle-Like Radiation

机译:使用惠更斯多极阵列实现单向针状辐射

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For nearly a century, the concept of needle radiation has captured the attention of the electromagnetics communities in both physics and engineering, with various types of contributions reoccurring every decade. With the near-term needs for highly directive, electrically small radiators and scatterers for a variety of communications and sensor applications, superdirectivity has again become a topic of interest. While it is well known that superdirective solutions exist and suffer ill-posedness issues in principle, a detailed needle solution has not been reported previously. We demonstrate explicitly, for the first time, how needle radiation can be obtained theoretically from currents driven on an arbitrary spherical surface, and we explain why such a result can only be attained in practice with electrically large spheres. On the other hand, we also demonstrate, more practically, how broadside radiating Huygens source multipoles can be combined into an end-fire array configuration to achieve needle-like radiation performance without suffering the traditional problems that have previously plagued superdirectivity.
机译:在近一个世纪的时间里,针辐射的概念在物理和工程领域都引起了电磁学界的关注,并且每十年都会出现各种类型的贡献。随着对各种通信和传感器应用的高定向,电气小辐射体和散射体的近期需求,超方向性再次成为人们关注的话题。众所周知,存在超指导解决方案,并且原则上会遇到不适定问题,但以前尚未报告过详细的针头解决方案。我们首次明确展示了理论上如何从任意球面上驱动的电流中获得针状辐射,并解释了为什么只有在电大的球体中才能获得这种结果。另一方面,我们还更实际地演示了如何将宽边辐射的惠更斯源多极天线组合成端射阵列配置,以实现类似针的辐射性能,而不会遭受以前困扰超指向性的传统问题。

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