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Exciting Vorticity Through Higher Order Bessel Beams With a Radial-Line Slot-Array Antenna

机译:径向线缝隙阵列天线通过高阶贝塞尔光束激发涡流

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In this communication, it is shown that a nondiffracting vortex beam (i.e., a higher order Bessel beam with azimuthal phase variation) can be generated in the near field by synthesizing an inward cylindrical traveling-wave distribution over a finite aperture antenna. A radial line slot array (RLSA) is then designed to prove the concept. The collimated vortex beam is excited in the proximity of the RLSA, within a region properly defined by the nondiffracting range of the generated beam. The radial dependence of the longitudinal electric field of the vortex-beam magnitude follows a first-order Bessel function, and its phase presents a linear azimuthal variation. Full-wave results validate the generation of the nondiffractive higher order Bessel beam within the radiative near field of the launcher.
机译:在该通信中,示出了可以通过在有限孔径天线上合成向内的圆柱形行波分布来在近场中产生非衍射涡流束(即,具有方位角相位变化的高阶贝塞尔光束)。然后设计了径向线槽阵列(RLSA)来证明这一概念。准直的涡旋光束在RLSA的附近,在由生成光束的非衍射范围适当定义的区域内被激发。涡流束大小的纵向电场的径向依赖性遵循一阶贝塞尔函数,并且其相位呈现线性方位角变化。全波结果验证了发射器辐射近场内无衍射高阶贝塞尔光束的产生。

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