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Properties of Ternary One Dimensional Plasma Photomic Crystals for an Obliquely Incident Electromagnetic Wave Considering the Effect of Collisions in Plasma Layers 被引量:2
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作者 s. prasad Vivek sINGH A. K. sINGH 《Plasma Science and Technology》 SCIE EI CAS CSCD 2012年第12期1084-1090,共7页
An analytical study is presented on the modal dispersion characteristics, group velocity, and effective group, as well as the phase index of a ternary one dimensional plasma photonic crystal for an obliquely incident ... An analytical study is presented on the modal dispersion characteristics, group velocity, and effective group, as well as the phase index of a ternary one dimensional plasma photonic crystal for an obliquely incident electromagnetic wave considering the effect of collisions in plasma layers. The dispersion relation is derived by using the transfer matrix method and the boundary conditions based on electromagnetic theory. The dispersion curves are plotted for both the normal photonic band gap structure and the absorption photonic band gap structure. It is found that the increase in the angle of incidence shifts the photonic band gap toward higher frequencies. Also, the cutoff frequency is independent of collisions. 展开更多
关键词 ternary plasma photonic crystal dispersion curves group and phase velocities obliquely incident collision effect
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Study on the Reflection Spectra of One Dimensional Plasma Photonic Crystals Having Exponentially Graded Materials 被引量:1
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作者 s. prasad Vivek sINGH A. K. sINGH 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第5期443-447,共5页
The transfer matrix method is used to study the effect of the permittivity profile on the reflectivity of a one dimensional plasma photonic crystal having exponentially graded material. The analysis shows that the pro... The transfer matrix method is used to study the effect of the permittivity profile on the reflectivity of a one dimensional plasma photonic crystal having exponentially graded material. The analysis shows that the proposed structure works as a perfect mirror within a certain frequency range. These frequency ranges can be completely controlled by the permittivity profile of a graded dielectric layer. As expected we observed that these frequency ranges are also controlled by plasma parameters. 展开更多
关键词 graded dielectric layer plasma photonic crystal REFLECTIVITY transfer matrixmethod
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