@inproceedings{15d5eb2520004ba8b5240adff66e7296,
title = "Plasma slab{\textquoteright}s electromagnetic behavior calculation based on two auxiliary differential equation (ADE) styles",
abstract = "Two styles of Auxiliary Differential Equation (ADE) were applied and compared in this paper to study the electromagnetic behavior in plasma slab. One ADE samples polarization current at integer time step and the other samples it at half integer time step. In implication via computer code, the former method need to store one more back level electric field to update polarization current, while the other need not. Numerical results are compared with exact and Piecewise Linear Recursive Convolution (PLRC) solution to validate the algorithm. The results show that the two ADE styles have almost the same accuracy as PLRC.",
keywords = "Auxiliary differential equation (ADE), Finite-difference time-domain (FDTD), Plasma, Reflection, Transmission",
author = "Jinzu Ji and Hongqian Wu and Peilin Huang",
note = "Publisher Copyright: {\textcopyright} 2016 Taylor and Francis Group.; International Conference on Electrical, Control Engineering and Computer Science, ECECS 2015 ; Conference date: 30-05-2015 Through 31-05-2015",
year = "2016",
doi = "10.1201/b19362-14",
language = "英语",
isbn = "9781138029378",
series = "Electrical, Control Engineering and Computer Science - Proceedings of the 2015 International Conference on Electrical, Control Engineering and Computer Science, ECECS 2015",
publisher = "CRC Press/Balkema",
pages = "59--62",
editor = "Jian Liu",
booktitle = "Electrical, Control Engineering and Computer Science - Proceedings of the 2015 International Conference on Electrical, Control Engineering and Computer Science, ECECS 2015",
}