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首页> 外文期刊>IEEE Journal of Quantum Electronics >Reduced-confinement GaAlAs tapered waveguide antennas for enhanced far-field beam directionality
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Reduced-confinement GaAlAs tapered waveguide antennas for enhanced far-field beam directionality

机译:缩小约束的GaAlAs锥形波导天线,增强远场波束方向性

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摘要

Reduced-confinement tapered waveguide antennas are shown to produce reductions of <35% in the transverse far-field beam divergence for radiation emitted from GaAlAs slab waveguides, resulting in far-field beams as narrow as 8.2 degrees full width at half-maximum (FWHM) along the direction perpendicular to the wafer surface. Reduced confinement of the guided mode near the output endface is achieved using a novel molecular-beam-epitaxy growth technique to produce a longitudinal reduction in the refractive index and thickness of the waveguide film. The reduced-confinement geometry has the distinct advantage over horn antennas of being compatible with two-dimensional antenna development. A numerical simulation is used to verify and predict the performance limitations of reduced-confinement antennas. Requirements on both the amplitude and phase profiles of the electric field at the antenna output are shown to impose a stringent lower limit on the acceptable taper length for optimal antenna performance.
机译:减小约束的锥形波导天线显示出对于GaAlAs平板波导发射的辐射,横向远场波束发散度降低了<35%,导致远场波束在半最大值(FWHM)时窄至8.2度全宽)沿垂直于晶圆表面的方向。使用新颖的分子束外延生长技术来实现波导模式在输出端面附近的减小限制,从而使波导膜的折射率和厚度产生纵向减小。与角形天线相比,减小约束的几何形状具有与二维天线开发兼容的独特优势。数值模拟用于验证和预测缩小约束天线的性能局限性。天线输出电场强度和相位分布的要求都显示出对可接受的锥度长度施加严格的下限,以获得最佳的天线性能。

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