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Transfer matrices combined with Green's functions for the multiple-scattering simulation of electronic projection imaging

机译:结合格林函数的传递矩阵用于电子投影成像的多散射模拟

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摘要

Electronic projection imaging is described in the framework of a multiple-scattering theory, by using a combination of transfer-matrix and Green's-function formalisms. The transfer-matrix methodology is used to compute the wave propagation within the tip and object scattering region, while the Green's-function formalism is used to describe the electron projection from the scatterers towards a distant imaging screen. This full-order theory is needed to overcome the Limits of the first Born approximation and deal with three-dimensional effects. In particular, this approach is able to account for sucking-in and standing-wave effects taking place close to or inside the object. The simulation of the electronic diffraction by a model nanoscopic carbon rod, eventually containing inhomogeneities, is considered in detail. [S0163-1829(99)11527-3]. [References: 39]
机译:通过使用转移矩阵和格林函数形式主义的组合,在多重散射理论的框架中描述了电子投影成像。转移矩阵方法用于计算尖端和物体散射区域内的波传播,而格林函数形式则用于描述从散射体向远处成像屏幕的电子投影。需要这种全序理论来克服第一个Born逼近的极限并处理三维效应。特别地,该方法能够解决在物体附近或内部发生的吸气和驻波效应。详细考虑了通过模型纳米碳棒(最终包含不均匀性)对电子衍射的模拟。 [S0163-1829(99)11527-3]。 [参考:39]

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