Bao Gang, Li Peijun
Department of Mathematics, Michigan State University, East Lansing, Michigan 48824, USA.
Opt Lett. 2007 Jun 1;32(11):1465-7. doi: 10.1364/ol.32.001465.
A novel regularized recursive linearization method is developed for a two-dimensional inverse medium scattering problem that arises in near-field optics, which reconstructs the scatterer of an inhomogeneous medium located on a substrate from data accessible through photon scanning tunneling microscopy experiments. Based on multiple frequency scattering data, the method starts from the Born approximation corresponding to weak scattering at a low frequency, and each update is obtained by continuation on the wavenumber from solutions of one forward problem and one adjoint problem of the Helmholtz equation.
针对近场光学中出现的二维逆介质散射问题,开发了一种新颖的正则化递归线性化方法,该问题是根据通过光子扫描隧道显微镜实验可获取的数据来重建位于基底上的非均匀介质的散射体。基于多频散射数据,该方法从对应于低频弱散射的玻恩近似开始,每次更新通过从亥姆霍兹方程的一个正向问题和一个伴随问题的解在波数上进行延拓来获得。