Mode conversion of large-amplitude electromagnetic waves in relativistic critical density plasmas
The propagation of linearly polarized large-amplitude electromagnetic waves in critical density plasmas is studied in the framework of the Akiezer-Polovin model. A new mechanism of mode conversion is presented. The well-known periodic solutions are generalized to quasiperiodic solutions taking into...
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Veröffentlicht in: | Europhysics letters 2009-01, Vol.85 (2), p.25003-25003(4) |
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description | The propagation of linearly polarized large-amplitude electromagnetic waves in critical density plasmas is studied in the framework of the Akiezer-Polovin model. A new mechanism of mode conversion is presented. The well-known periodic solutions are generalized to quasiperiodic solutions taking into account additional electrostatic oscillations. Nearly periodic circle-like solutions are found to be stabilized by intrinsic mode coupling whereas for nearly periodic eight-like solutions an effective mode conversion mechanism is discovered. Finally, the modulation timescales are considered. |
doi_str_mv | 10.1209/0295-5075/85/25003 |
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C</creatorcontrib><creatorcontrib>Kull, H.-J</creatorcontrib><title>Mode conversion of large-amplitude electromagnetic waves in relativistic critical density plasmas</title><title>Europhysics letters</title><description>The propagation of linearly polarized large-amplitude electromagnetic waves in critical density plasmas is studied in the framework of the Akiezer-Polovin model. A new mechanism of mode conversion is presented. The well-known periodic solutions are generalized to quasiperiodic solutions taking into account additional electrostatic oscillations. Nearly periodic circle-like solutions are found to be stabilized by intrinsic mode coupling whereas for nearly periodic eight-like solutions an effective mode conversion mechanism is discovered. 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C</au><au>Kull, H.-J</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Mode conversion of large-amplitude electromagnetic waves in relativistic critical density plasmas</atitle><jtitle>Europhysics letters</jtitle><date>2009-01-01</date><risdate>2009</risdate><volume>85</volume><issue>2</issue><spage>25003</spage><epage>25003(4)</epage><pages>25003-25003(4)</pages><issn>0295-5075</issn><eissn>1286-4854</eissn><abstract>The propagation of linearly polarized large-amplitude electromagnetic waves in critical density plasmas is studied in the framework of the Akiezer-Polovin model. A new mechanism of mode conversion is presented. The well-known periodic solutions are generalized to quasiperiodic solutions taking into account additional electrostatic oscillations. Nearly periodic circle-like solutions are found to be stabilized by intrinsic mode coupling whereas for nearly periodic eight-like solutions an effective mode conversion mechanism is discovered. 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title | Mode conversion of large-amplitude electromagnetic waves in relativistic critical density plasmas |
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