A perturbation theory for light diffraction from a bigrating with multiple surface-polariton excitation - Info and Reading Options
By Nathaniel E. Glass

"A perturbation theory for light diffraction from a bigrating with multiple surface-polariton excitation" was published by Naval Postgraduate School in 1986 - Monterey, Calif, it has 18 pages and the language of the book is English.
“A perturbation theory for light diffraction from a bigrating with multiple surface-polariton excitation” Metadata:
- Title: ➤ A perturbation theory for light diffraction from a bigrating with multiple surface-polariton excitation
- Author: Nathaniel E. Glass
- Language: English
- Number of Pages: 18
- Publisher: Naval Postgraduate School
- Publish Date: 1986
- Publish Location: Monterey, Calif
“A perturbation theory for light diffraction from a bigrating with multiple surface-polariton excitation” Subjects and Themes:
- Subjects: DIFFRACTION - PLASMONS
Edition Specifications:
- Pagination: 18 p. ;
Edition Identifiers:
- The Open Library ID: OL25481139M - OL16856840W
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"A perturbation theory for light diffraction from a bigrating with multiple surface-polariton excitation" Description:
The Open Library:
A perturbation theory has recently been developed for treating the diffration of light, with surface polariton resonant excitation, from a bigrating surface. The theory is an approximation, to first order in the grating height, of an earlier theory based on the Rayleigh hypothesis. The perturbation theory holds for arbitrary polarization and for arbitrary plane of incidence with respect to the grating directions. It is, however, limited to treating only the possibility of two simultaneous resonant evanescent waves, whereas four are possible at normal incidence on a square grating, and three are possible on a rectangular grating. The present work generalizes the earlier work to allow for a four fold (or three fold) resonance. This extension also allows one now to determine the complex dispersion relation for surface-polaritons, for wavevectors at the intersection of two Brillouin zone boundary lines (not possible in the previous formulation). Keywords: Smith Purcell radiation; Bigrating; Grating; Surface plasmon; Polariton.
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