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- W1034436710 abstract "This chapter presents the propagation characteristics of electromagnetic wave (EMW) in collisional (dispersive) plasma. Non-equilibrium, weakly ionized plasma has a special property that is exploited for a wide variety of scientific applications. The response of weakly ionized plasma to the incident EMW depends on the angular frequency ω of the wave and the plasma frequency ω pe , as well as the electron-molecular collision frequency V c . There are three modes in which the EMW interacts with plasma: 1) reflection, occurring at the surface when ω < ω pe , 2) transmission, passing through the plasma if ω < ω pe, and 3) surface mode, propagating along the boundary of the plasma and the dielectric. Therefore, the gas discharge induced plasma is a special medium, which has the ability to reflect EMW below the plasma frequency while transfer EMW above the plasma frequency. The attenuation and distortion coefficients of EMW in the plasma are calculated based on the Maxwell's equations. The results show that the plasma density (frequency), the electron-neutral collision, and signal duration play important roles in the EMW transfer characteristics. The dense, collisional plasma can be used as controllable medium for transmitting and obstructing EMW." @default.
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- W1034436710 date "2004-01-01" @default.
- W1034436710 modified "2023-09-26" @default.
- W1034436710 title "Electromagnetic Wave Propagation in collisional Plasma" @default.
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- W1034436710 doi "https://doi.org/10.1016/b978-008044584-7.50012-8" @default.
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