Finite-difference time-domain studies of light transmission through nanohole structures
β Scribed by K.L. Shuford; M.A. Ratner; S.K. Gray; G.C. Schatz
- Publisher
- Springer
- Year
- 2006
- Tongue
- English
- Weight
- 371 KB
- Volume
- 84
- Category
- Article
- ISSN
- 0721-7269
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π SIMILAR VOLUMES
In this paper, we present a technique for modeling periodic structures, such as spatial filters and photonic bandgap materials, using ( ) the finite-difference time-domain FDTD algorithm, for both the normal and oblique incidence cases. A wa¨eguide simulator technique is employed to model these peri
## Abstract Study of electromagnetic bandβgap (EBG) structures has become a hot topic in computational electromagnetics. In this article, some EBG structures integrated inside a circular waveguide are studied. They are formed by a series of airβgaps within a circular dielectricβfilled waveguide. A