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Ion-acoustic cnoidal waves in plasmas with warm ions and kappa distributed electrons and positrons
53
Citations
46
References
2014
Year
Periodic WavesEngineeringPhysicsPositrons Epi PlasmasApplied PhysicsApplied Plasma PhysicFundamental Plasma PhysicAtomic PhysicsPlasma SciencePlasma PhysicsElectrostatic Ion-acoustic PeriodicWarm IonsIon-acoustic Cnoidal Waves
Electrostatic ion-acoustic periodic (cnoidal) waves and solitons in unmagnetized electron-positron-ion (EPI) plasmas with warm ions and kappa distributed electrons and positrons are investigated. Using the reductive perturbation method, the Korteweg-de Vries (KdV) equation is derived with appropriate boundary conditions for periodic waves. The corresponding analytical and various numerical solutions are presented with Sagdeev potential approach. Differences between the results caused by the kappa and Maxwell distributions are emphasized. It is revealed that only hump (compressive) structures of the cnoidal waves and solitons are formed. It is shown that amplitudes of the cnoidal waves and solitons are reduced in an EPI plasma case in comparison with the ordinary electron-ion plasmas. The effects caused by the temperature variations of the warm ions are also discussed. It is obtained that the amplitude of the cnoidal waves and solitons decreases for a kappa distributed (nonthermal) electrons and positrons plasma case in comparison with the Maxwellian distributed (thermal) electrons and positrons EPI plasmas. The existence of kappa distributed particles leads to decreasing of ion-acoustic frequency up to thermal ions frequency.
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