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- W942464968 abstract "Low-temperature plasmas have been of much interest recently because of their usefulness in many technological applications of plasmas for which very high temperatures such as those in fusion plasmas are not required. Unlike hot plasmas, which must be confined by strong magnetic fields, most low-temperature laboratory plasmas are bounded by rigid metallic or dielectric containers. The spectrum of waves in these plasmas includes modes, the so-called surface waves, which are intimately associated with the presence of the boundary. It is well known that electromagnetic surface waves in the frequency regime where the dielectric permittivities of the plasma and the bounding medium are of different signs [338–340] can propagate. A characteristic feature of the surface modes is the rapid (exponential for plane boundaries) attenuation of their energy away from the boundary. Thus the wave energy flows exclusively along the boundary and not at all in the perpendicular direction. This feature leads, among others, to the relatively low (always less than the speed of light in the bounding medium) phase speeds of the surface waves. Thus one can consider surface modes as waves propagating along the interface of two media without radiating into either of them. It should be noted that in some situations, surface waves can also occur in a medium of uniform composition, but one or more of the physical parameters, such as the external magnetic field, varies rapidly (jumps) at a certain location (the “surface” or “interface”)." @default.
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- W942464968 date "1995-01-01" @default.
- W942464968 modified "2023-09-23" @default.
- W942464968 title "Instabilities of Surface Waves" @default.
- W942464968 doi "https://doi.org/10.1007/978-94-017-2306-0_9" @default.
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