论文标题

外部磁场和灰尘晶粒对离子声波特性的影响

Effect of external magnetic field and dust grains on the properties of Ion Acoustic Waves

论文作者

Deka, K., Paul, R., Sharma, G., Das, N., Adhikari, S., Moulick, R., Kausik, S. S., Saikia, B. K., Chin, O. H., Wong, C. S.

论文摘要

一项实验研究,研究了外部磁场对离子声波传播(IAW)传播的影响,该研究已在含有两个温度电子和灰尘晶粒的氢等离子体中进行。低压热阴极排出方法被选择用于血浆产生。所需的两个具有不同温度的电子基是通过在同一腔室中插入具有不同表面场强度的尖式磁场的两个磁性笼子来实现的。借助灰尘滴管,将粉尘颗粒掉入血浆中,通过与等离子体相互作用,从而获得负电荷。 IAW在插入等离子体的网格网格的帮助下感到兴奋。平面Langmuir探针用作检测IAWS的检测器。已经应用了飞行技术的时间来测量IAW的相位速度。结果表明,在存在磁场的情况下,IAW的相速度增加,而引入灰尘颗粒会导致较低的速度。据信磁场对波浪阻尼有重大影响。这项研究将有助于利用IAW作为诊断工具,以在存在外部磁场的情况下估算血浆参数。此外,该研究可能对于估计两个阳性离子物种血浆中的相对离子浓度以及在存在外部磁场的存在下的相对浓度。

An experimental study to investigate the effect of an external magnetic field on the propagation of ion-acoustic waves (IAWs) has been carried out in hydrogen plasma containing two-temperature electrons and dust grains. A low-pressure hot cathode discharge method is opted for plasma production. The desired two electron groups with distinct temperatures are achieved by inserting two magnetic cages with a cusp-shaped magnetic field of different surface field strengths in the same chamber. The dust grains are dropped into the plasma with the help of a dust dropper, which gain negative charges by interacting with the plasma. The IAWs are excited with the help of a mesh-grid inserted into the plasma. A planar Langmuir probe is used as a detector to detect the IAWs. The time of flight technique has been applied to measure the phase velocity of the IAWs. The results suggest that in the presence of a magnetic field, the phase velocity of IAWs increases, whereas introducing the dust particles leads to the lower phase velocity. The magnetic field is believed to have a significant effect on the wave damping. This study will aid in utilising IAWs as a diagnostic tool to estimate plasma parameters in the presence of an external magnetic field. Moreover, the study might be useful for estimating the relative ion concentrations in a two positive ion species plasma, as well as the relative concentration of the negative ions in the presence of an external magnetic field.

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