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Accurate determination of surface electric fields for conformal finite difference time domain simulations

机译:用于共形有限差分时域仿真的表面电场的精确确定

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Summary form only given. Modeling an electromagnetic (EM) structure with curved boundaries using a conformal finite-difference time-domain (CFDTD) method retains a second order accuracy while using a staircased FDTD one only gives a first order accuracy. In spite of the advantages to use the CFDTD method in EM simulations, the calculation of surface electric fields is performed by interpolation methods but usually gives unsatisfied results. In this work, a new algorithm being able to accurately determine surface electric fields near a curved surface has been developed and tested. The preliminary benchmark results show convergence that the surface electric fields can be calculated as accurately as higher than 99% using a 160 by 160 grid in 2D. Since the algorithm has been validated in 2D, a 3D counterpart is under development. Accurate determination of surface electric fields in CFDTD simulations is important for a lot of research studies such as surface breakdown, field emission, plasma wall interaction, etc. Detailed algorithm and benchmark results will be presented.
机译:仅提供摘要表格。使用共形有限差分时域(CFDTD)方法对具有弯曲边界的电磁(EM)结构进行建模可以保留二阶精度,而使用阶梯式FDTD只能给出一阶精度。尽管在电磁仿真中使用CFDTD方法具有优势,但表面电场的计算还是通过插值方法进行的,但通常得出的结果并不令人满意。在这项工作中,已经开发并测试了一种新算法,该算法能够准确确定曲面附近的表面电场。初步的基准测试结果表明,使用160 x 160的2D网格可以精确计算出高于99%的表面电场。由于该算法已在2D模式下得到验证,因此正在开发3D模式。在CFDTD仿真中准确确定表面电场对于许多研究而言非常重要,例如表面击穿,场发射,等离子体壁相互作用等。将介绍详细的算法和基准测试结果。

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