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Three-dimensional analysis of bending losses in dielectric optical waveguides with arbitrary refractive-index profile

机译:具有任意折射率分布的介电光波导中弯曲损耗的三维分析

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摘要

A three-dimensional analysis of bending losses in dielectric optical waveguides is presented. It constitutes a nontrivial generalization of previous two- and three-dimensional studies by other authors. Our analysis is based on homogeneous integral equations for the total radiation field and suitable asymptotic approximations for Green’s functions. A key role is played by a new three-dimensional approximation for a relevant Bessel function with large order and argument (the former being larger than the latter). A nontrivial check of the consistency of all those approximations is given. General formulas are presented for the radiated field and the energy flow and for a bending-loss coefficient in three dimensions. Numerical results are also given, in order to assess the difference between the results of other authors and ours. Such a difference is rather small for monomode behavior near cutoff, increases as the behavior of the waveguide changes from monomode to multimode, and decreases as the parameter V increases for a given core radius and propagation mode.
机译:介绍了介电光波导中弯曲损耗的三维分析。它构成了其他作者以前的两维研究的非活动化。我们的分析基于总辐射场的均匀积分方程和绿色函数的合适渐近近似。具有大秩序和参数的相关贝塞尔函数的新三维近似来扮演关键作用(前者大于后者)。给出了所有这些近似的一致性的非动力检查。将通用公式呈现给辐射的场和能量流动以及三维弯曲损耗系数。还给出了数值结果,以评估其他作者和我们的结果之间的差异。这种差异对于截止的单数行为而言相当小,随着波导从单数变为多模的行为而增加,并且随着参数V的增加而降低,对于给定的核心半径和传播模式。

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