基于波束传播方法的光波导结构分析

L. Suresh, S. Sundaravadivelu, S. Ponmalar
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摘要

分析了抛物折射率平面波导中心插入金属条的散射辐射,利用波束传播方法设计了光子天线,将能量从波导传输到自由空间。该技术允许将金属条解释为底层波导模式的散射元件和衍射场的辐射源。对插入高折射率金属条的抛物折射率平面波导进行了评价,并给出了光子天线辐射参数的显式公式。该框架允许分离具有高折射率值的金属条插入的影响和金属条元件的特定尺寸的影响。金属条元件的折射率值、形状和光子天线系统的行为之间的直接类比,可以清楚而灵敏地理解金属条对波导耦合辐射方向性的影响。结果仅覆盖了TE模式,并且有可能在光学无线频率范围内实现高定向光子天线。得到了功率沿z方向分布的抛物折射率波导结构不同工作波长的结果,并提出了光子天线的有效波长
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Analysis of optical waveguide structure using beam propagation method for optical wireless communications
Radiation scattered from a parabolic index planar waveguide with the insertion of metal strip at the centre is analyzed to design the photonic antenna, which transfers the energy from waveguide to free space, using beam propagation method (BPM). This technique allows the interpretation of the metal strip as scattering element of the underlying waveguide mode and radiating sources for the diffracted fields. The parabolic index planar waveguide with the insertion of metal strip with high refractive index value is evaluated and often explicit formulas for the radiating parameters of photonic antennas. The framework allows separation of the effects of the metal strip insertion with high refractive index value and the effects of the specific size of the metal strip element. A straightforward analogy between the effects of the metal strip element's refractive index value, shape and the behaviour of photonic antenna systems allow a clear and sensitive understanding of the effects of metal strip on the directionality of waveguide coupled radiation. The results covered only TE modes and it is possible to achieve high directional photonic antennas in the range of optical wireless frequencies. The results are obtained for various operating wavelengths of parabolic index waveguide structure with power distribution along z-direction and the efficient wavelength is proposed for photonic antenna
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