摘要
Ultrawideband simulation of negative refraction in bicrystals is important for the design optimization of devices involving such anisotropic media, but it is a nontrivial task, especially when low-order methods are utilized. This work proposes an improved discontinuous Galerkin time domain (DGTD) method for simulating time-dependent electromagnetic fields for inhomogeneous media with full anisotropic constitutive parameters (full anisotropic media). It employs the electric field intensity E and magnetic flux density B to solve Maxwell's equations. The EB-scheme-based anisotropic Riemann solver and nonconformal mesh are employed for domain decomposition to allow efficient spatial discretization. An unsplit-field Maxwellian multiaxial perfectly matched layer for full anisotropic media is derived and shown to be effective to absorb outgoing waves and suppress the potential late-time instability found in classical PML. In addition, the total-field/scattered-field technique is further studied to allow a nonconformal mesh, vector basis functions, and half-space situation. This newly improved DGTD method is validated with test cases and applied to the negative reflection in YVO4 bicrystal.
| 源语言 | 英语 |
|---|---|
| 期刊论文编号 | 7862232 |
| 期刊 | IEEE Photonics Journal |
| 卷 | 9 |
| 期 | 2 |
| DOI | |
| 出版状态 | 已出版 - 4月 2017 |
| 已对外发布 | 是 |
学术指纹
探究 'An Improved Subdomain Level Nonconformal Discontinuous Galerkin Time Domain (DGTD) Method for Materials With Full-Tensor Constitutive Parameters' 的科研主题。它们共同构成独一无二的学术指纹。引用此
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