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Projection Operator Method for Solving Coupled-Mode Equations: An Application to Separating Forward and Backward Scattered Acoustic Fields

机译:求解耦合模式方程的投影算子方法:分离前后散射声场的应用

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Examined is the concept of a nonlocal effective interaction applied to scattering problems in underwater acoustics. A projection operator approach previously introduced in nuclear theory is employed to place the basic coupled mode integral equations into an alternate form. The dimension of the original coupled equations is reduced by half, to the dimension of the forward propagating modes, by a channel elimination process. The reduction in dimension occurs at the expense of the introduction of a nonlocal optical potential that couples the forward and backward propagating subspaces. A perturbation method leads to a multiple scattering representation of the effective interaction for the coupling. It is demonstrated that it is possible to generate a consistent methodology to separate the forward and backward propagating fields and to form a forward propagating field that includes perturbative corrections because of the coupling of the backward propagating field.
机译:检查是应用于水下声学中的散射问题的非识别有效相互作用的概念。采用先前在核理论中引入的投影操作方法方法将基本耦合模式整体方程放入替代形式。通过信道消除过程,原始耦合方程的尺寸减小到前向传播模式的尺寸。尺寸的减小以牺牲耦合前向和向后传播的子空间的非识别光学电位的费用。扰动方法导致多个散射表示耦合的有效相互作用。据证明,可以生成一致的方法来分离前向和后向传播字段,并形成包括扰动校正的前向传播字段,因为向后传播场的耦合。

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