横向磁场中激光产生的铜和碳等离子体中的空穴和电荷分离

IF 1.3 Q3 ORTHOPEDICS Plasma Research Express Pub Date : 2021-06-04 DOI:10.1088/2516-1067/ac0580
N. Behera, Ajai Kumar, R. K. Singh
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引用次数: 2

摘要

在本工作中,我们报道了在不同横向磁场存在下,激光烧蚀铜和石墨(碳)靶形成的等离子体羽流的动力学和几何特征。这项工作强调了羽流物质的原子质量对磁场中膨胀等离子体羽流的抗磁性行为和几何方面的影响。为了对铜和碳等离子体羽流的投影三维结构进行比较研究,对同时捕获的垂直于膨胀轴的两个方向的图像进行了时间分辨分析。在磁场存在的情况下,在铜等离子体羽流和碳等离子体羽流之间观察到在反磁腔的形成和结构形成方面的显著差异。在铜等离子体羽流的情况下观察到椭圆腔状结构,随着时间延迟或磁场强度的增加,羽流达到尖锐的圆锥形。另一方面,在磁场存在的情况下,分裂的碳等离子体羽流表现为Y形结构,其中在所考虑的时间和磁场内没有观察到腔状结构。基于椭圆柱几何结构的修正能量平衡关系,我们还模拟了羽流的动力学,这与在抗磁性和非抗磁性区域观察到的等离子体膨胀非常一致。
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Cavitation and charge separation in laser-produced copper and carbon plasma in transverse magnetic field
In the present work, we report the dynamics and geometrical features of the plasma plume formed by the laser ablation of copper and graphite (carbon) targets in the presence of different transverse magnetic field. This work emphasizes on the effect of atomic mass of the plume species on the diamagnetic behaviour and geometrical aspect of the expanding plasma plume in the magnetic field. The time-resolved analysis of the simultaneously captured two directional images in orthogonal to the expansion axis is carried out for the comparative study of projected three-dimensional structure of copper and carbon plasma plume. In the presence of magnetic field, sharp differences are observed between the copper and carbon plasma plumes in terms of formation of diamagnetic cavity and structure formation. An elliptical cavity-like structure is observed in case of copper plasma plume which attains the sharp conical shape with increasing the time delay or magnetic field strength. On the other hand, splitted carbon plasma plume appears as a Y-shape structure in the presence of magnetic field where the cavity-like structure is not observed for the considered time and magnetic field. Based on the modified energy balance relation for the elliptic cylindrical geometry, we have also simulated the dynamics of the plume which is in close agreement with observed plasma expansion in diamagnetic and non-diamagnetic regions.
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来源期刊
Plasma Research Express
Plasma Research Express Energy-Nuclear Energy and Engineering
CiteScore
2.60
自引率
0.00%
发文量
15
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