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Generation of Propagating Bessel Beams Using Leaky-Wave Modes

机译:使用漏波模式生成传播的贝塞尔光束

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摘要

The generation of Bessel beams using a leaky radial waveguide is presented. The radial waveguide consists of a capacitive sheet over a ground plane. It supports an azimuthally invariant leaky-wave mode whose normal electric-field component is a truncated, zeroth-order Bessel function. The annular spectrum and nondiffractive extent of the Bessel beam is clearly linked to the complex wavenumber of the leaky-wave mode. The fields inside the radial waveguide are derived using classical vector potential techniques. A vector approach is employed to avoid paraxial approximations of earlier works and the associated limitations on shaping the Bessel beam. Design rules are provided to synthesize a desired propagating Bessel beam. A simple coaxial feed is proposed for the radial waveguide and its input impedance is derived analytically. The analytical results are also validated numerically. The proposed structure and design procedure can be used for generating arbitrary zeroth-order propagating Bessel beams at microwave and millimeter-wave frequencies.
机译:提出了使用泄漏径向波导生成贝塞尔光束的方法。径向波导由接地平面上的电容片组成。它支持方位角不变的泄漏波模式,其正常电场分量为截断的零阶贝塞尔函数。贝塞尔光束的环形光谱和非衍射范围显然与泄漏波模式的复波数有关。径向波导内部的场是使用经典矢量势技术得出的。采用矢量方法来避免较早工作的傍轴近似以及对贝塞尔光束整形的相关限制。提供设计规则以合成所需的传播贝塞尔光束。提出了一种用于径向波导的简单同轴馈电,并通过分析得出其输入阻抗。分析结果也得到了数值验证。所提出的结构和设计程序可用于产生微波和毫米波频率的任意零阶传播的贝塞尔光束。

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