首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Effect of hot ion temperature on obliquely propagating ion-acoustic solitons and double layers in an auroral plasma
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Effect of hot ion temperature on obliquely propagating ion-acoustic solitons and double layers in an auroral plasma

机译:热离子温度对极光等离子体中倾斜传播的离子声孤子和双层的影响

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摘要

Properties of obliquely propagating ion-acoustic solitons and double layers in a magnetized auroral plasma composed of hot adiabatic ions and two types of, cool and hot Maxwellian electrons are studied using Sagdeev pseudo-potential technique and assuming the quasi-neutrality condition. The new and surprising result which emerges from the model is that in contrast to the case of cold ions where ion-acoustic solitons and double layers are found for subsonic Mach numbers only, the hot ions case allows these nonlinear structures to exist for both subsonic and supersonic Mach number regimes. The double layers exist at lower angle of propagation as hot ion temperature is increased. The soliton electric field amplitudes are increased but their width and pulse duration are decreased with the increase in hot ion temperature. For the auroral zone parameters, the maximum electric field amplitude, width, pulse duration and speed for the solitons come out to be in the range ~ (0.3-15) mV/m, ~ (195-455) m, (7-20) ms and (22-26) km/s, respectively. The results seem to be in agreement with the Viking satellite observations in the auroral zone.
机译:使用Sagdeev拟势技术,并在拟中性条件下,研究了由绝热离子和两种冷,热麦克斯韦电子组成的磁化极光等离子体中倾斜传播的离子声孤子和双层的性质。从模型中得出的新的令人惊讶的结果是,与仅在亚音速马赫数下发现离子声孤子和双层的冷离子情况相反,在热离子情况下,亚音速和亚音速存在这些非线性结构。超音速马赫数体制。随着热离子温度的升高,双层以较低的传播角存在。随着热离子温度的升高,孤子电场幅度增加,但其宽度和脉冲持续时间减小。对于极光带参数,孤子的最大电场幅度,宽度,脉冲持续时间和速度在〜(0.3-15)mV / m,〜(195-455)m,(7-20)范围内。 )毫秒和(22-26)km / s。结果似乎与极光地区维京卫星的观测结果一致。

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