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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >A mapped Scharfetter-Gummel formulation for the efficient simulation of semiconductor device models
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A mapped Scharfetter-Gummel formulation for the efficient simulation of semiconductor device models

机译:映射的Scharfetter-Gummel公式可有效模拟半导体器件模型

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摘要

An efficient numerical solution scheme based on a new mapped finite difference discretization and iterative strategies is developed for submicron semiconductor devices. As a representative model we consider a nonparabolic hydrodynamic system. The discretization is formulated in a mapped reference domain, and incorporates a transformed Scharfetter-Gummel treatment for the current density and energy flux. This permits the use of graded, nonuniform curvilinear grids in the physical domain of interest, which has advantages when gridding irregular domain shapes or grading meshes for steep solution profiles. The solution of the discrete system is carried out in a fully coupled, implicit form, and nonsymmetric gradient-type iterative strategies are investigated. Numerical results demonstrating the performance and reliability of the scheme are presented for test problems.
机译:针对亚微米半导体器件,开发了一种基于新的映射有限差分离散化和迭代策略的有效数值解决方案。作为代表性模型,我们考虑了非抛物线流体动力系统。离散化在映射的参考域中进行,并结合了针对电流密度和能量通量的变换后的Scharfetter-Gummel处理。这允许在感兴趣的物理域中使用渐变的非均匀曲线网格,这在对不规则的域形状进行网格化或对陡峭的解决方案轮廓进行网格化时具有优势。离散系统的解决方案以完全耦合的隐式形式进行,并且研究了非对称梯度型迭代策略。数值结果证明了该方案的性能和可靠性。

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