Сравнение методов
Просматривайте выбранные методы рядом; строки с различиями подсвечены.
| Строгий анализ связанных волн× | Конечно-разностный метод во временной области× | |
|---|---|---|
| Область | Оптика | Оптика |
| Семейство | Process / pipeline | Process / pipeline |
| Год появления≠ | 1981 | 1966 |
| Автор метода≠ | M. G. Moharam and T. K. Gaylord | Kane Yee |
| Тип≠ | Diffraction algorithm | Finite-difference algorithm |
| Основополагающий источник≠ | Moharam, M. G., & Gaylord, T. K. (1981). Rigorous coupled-wave analysis of planar-grating diffraction. Journal of the Optical Society of America, 71(7), 811-818. DOI ↗ | Yee, K. S. (1966). Numerical solution of initial boundary value problems involving Maxwell's equations in isotropic media. IEEE Transactions on Antennas and Propagation, 14(3), 302-307. DOI ↗ |
| Другие названия≠ | RCWA method, coupled-wave method, diffraction grating analysis | FDTD, Yee scheme |
| Связанные | 3 | 3 |
| Сводка≠ | Rigorous Coupled-Wave Analysis is a semi-analytical computational method for solving Maxwell's equations in periodic structures such as diffraction gratings and photonic crystals. Developed by Moharam and Gaylord in 1981, RCWA expands the electromagnetic fields in each periodic region into Fourier series and couples the fields at interfaces, enabling accurate and efficient simulation of light diffraction, resonances, and wave propagation in structured media. | The Finite-Difference Time-Domain method is a computational technique for solving Maxwell's equations by discretizing space and time on a grid. Introduced by Kane Yee in 1966, FDTD is a foundational approach in computational electrodynamics and optical simulation, enabling direct modeling of electromagnetic wave propagation through complex media. |
| ScholarGateНабор данных ↗ |
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