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Low-frequency computational electromagnetics (CEM) solvers play an important role in the simulation and advanced modeling for the static/quasi-static field. It can not only capture both inductive and capacitive physics for the circuit design, but also the weak coupling between the electric and magnetic fields. Especially for the modeling with nanometer-scaled objects, the low-frequency CEM (full-wave)...
The finite difference time domain (FDTD) method [1] is widely used in electromagnetic simulations. It is an iterative process where the computations in one iteration use the results of its previous iterations. Since the number of iterations are usually very large, FDTD computation requires a large amount of processing time. One the other hand, most of the computations corresponding to the cells in...
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