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A 3D fully nonlinear theory of ion acoustic solitary structures is constructed in three-component plasma consisting of non-thermal electrons, a hot ion background and a cold ion beam.
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The electric field associated with these positive and negative solitary structures are numerically computed.
It is observed that both negative and positive potential solitary structures are formed in the given plasma system.
Waveforms exhibiting spiked solitary structures are shown within the observational time period of magnetic null points (group 1).
The IA solitary structures are depicted in Figs. 1, 2 and 3 for different values of the plasma parameters.
It has also been shown that the basic features (height and thickness) of such DIA solitary structures are completely different from those of the usual IA solitary structures. 5.
Our results showed that most of the ESWs exhibit a solitary, nonlinear evolution structure; most of the solitary structures are observed with an offset electric field, which may reflect some kind of low-frequency turbulence.
It is interesting that most of the solitary structures are observed with an offset electric field, which may reflect some type of low-frequency turbulence or background DC electric field.
The solitary structure is formed from an ion acoustic wave when the effects of nonlinearity and dispersion are balanced in the plasma.
The parametric role of superthermality and positron content on the characteristics of solitary wave structures is also investigated.
Similar effect of the positron drift velocity is seen on the solitary structures (figure is not shown).
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