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首页> 外文期刊>Proceedings of the IEEE >Ray methods for modal fields in general closed and open propagation environments
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Ray methods for modal fields in general closed and open propagation environments

机译:一般封闭和开放传播环境中模态场的射线方法

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The author presents a systematic methodology for using modal solutions in nonseparable geometries. Ray parametrization is used as a technique for constructing approximate modal wave fields to treat guiding and ducting environments with varying transverse and longitudinal properties. Ideal modes are decoupled from, and propagate independently of, other modes in the set. When the channel does not conform with separability in one of the basic coordinate systems, ideal modes defined for separable conditions become coupled. If the departure from separability is weak, one may define adiabatic modes (AMs) that adapt smoothly, without coupling to other AMs, to the slow nonseparable longitudinal variations, retaining their distinct spectral identity throughout. Each AM fails in its own cutoff region, across which its wavefield changes from being propagating to becoming evanescent, and it must there be extended into an intrinsic mode (IM) which has greater spectral content.
机译:作者提出了在不可分几何中使用模态解的系统方法。射线参数化被用作构造近似模态波场的技术,以处理具有变化的横向和纵向特性的引导和导管环境。理想模式与集合中的其他模式解耦,并且独立于其他模式传播。当通道在基本坐标系之一中不符合可分离性时,为可分离条件定义的理想模式将耦合在一起。如果对可分离性的偏离很弱,则可以定义绝热模式(AM),这些绝热模式可以平滑地适应缓慢不可分离的纵向变化,而不会耦合到其他AM,从而始终保持其独特的光谱特性。每个AM都在其自己的截止区域中发生故障,在该截止区域中,其波场从传播变为逐渐消失,并且必须将其扩展为具有更大频谱含量的本征模式(IM)。

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