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电子非广延分布的多离子磁化等离子体鞘层特性
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作者 陈龙 檀聪琦 +4 位作者 崔作君 段萍 安宇豪 陈俊宇 周丽娜 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第5期217-227,共11页
等离子体磁化鞘层在半导体加工、材料表面改性、薄膜沉积等方面都发挥着重要作用.在等离子体实验和放电应用中,常存在由两种以上离子组成的多离子等离子体;对于长程相互作用的等离子体系统,非麦克斯韦分布的电子可通过Tsallis的非广延... 等离子体磁化鞘层在半导体加工、材料表面改性、薄膜沉积等方面都发挥着重要作用.在等离子体实验和放电应用中,常存在由两种以上离子组成的多离子等离子体;对于长程相互作用的等离子体系统,非麦克斯韦分布的电子可通过Tsallis的非广延分布来描述.本文针对多离子等离子体鞘层建立一维空间坐标三维速度坐标的流体模型,假设鞘层中电子速度服从非广延分布,本底氦离子和不同种类的杂质离子在有一定倾斜角度的磁场中被磁化,通过数值模拟探究了非广延参量、杂质离子及斜磁场对多离子磁鞘中离子的数密度、速度、壁面电势和离子动能等物理量的影响.结果表明,在氦氢或氦氩混合等离子体鞘层中,随着非广延参量增大,离子沿垂直壁方向的速度减小,鞘层中离子、电子数密度均减小,鞘层厚度减小,壁面处离子动能减小;当杂质离子浓度增大时,壁面处离子动能与离子种类无关.随着磁场强度的增大,氦离子数密度和沿垂直壁方向的速度在鞘边出现起伏,且波动幅度随着非广延参量的减小而增大,而重离子则无明显的波动.此外,还分析了杂质离子种类和浓度对鞘层相关特性的影响. 展开更多
关键词 多离子等离子体 非广延分布 磁化鞘层 玻姆判据
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Modeling of magnetized collisional plasma sheath with nonextensive electron distribution and ionization source
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作者 陈龙 杨叶慧 +5 位作者 安宇豪 段萍 孙少娟 崔作君 阚子晨 高维富 《Plasma Science and Technology》 SCIE EI CAS CSCD 2023年第3期21-31,共11页
The properties of an atmospheric-pressure collisional plasma sheath with nonextensively distributed electrons and hypothetical ionization source terms are studied in this work. The Bohm criterion for the magnetized pl... The properties of an atmospheric-pressure collisional plasma sheath with nonextensively distributed electrons and hypothetical ionization source terms are studied in this work. The Bohm criterion for the magnetized plasma is extended in the presence of an ion–neutral collisional force and ionization source. The effects of electron nonextensive distribution, ionization frequency, ion–neutral collision, magnetic field angle and ion temperature on the Bohm criterion of the plasma sheath are numerically analyzed. The fluid equations are solved numerically in the plasma–wall transition region using a modified Bohm criterion as the boundary condition. The plasma sheath properties such as charged particle density, floating sheath potential and thickness are thoroughly investigated under different kinds of ion source terms, contributions of collisions, and magnetic fields. The results show that the effect of the ion source term on the properties of atmosphericpressure collisional plasma sheath is significant. As the ionization frequency increases, the Mach number of the Bohm criterion decreases and the range of possible values narrows. When the ion source is considered, the space charge density increases, the sheath potential drops more rapidly,and the sheath thickness becomes narrower. In addition, ion–neutral collision, magnetic field angle and ion temperature also significantly affect the sheath potential profile and sheath thickness. 展开更多
关键词 plasma sheath Bohm criterion NONEXTENSIVITY ionization source
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电子非麦氏分布的二次电子发射磁化鞘层特性 被引量:3
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作者 陈龙 孙少娟 +3 位作者 姜博瑞 段萍 安宇豪 杨叶慧 《物理学报》 SCIE EI CAS CSCD 北大核心 2021年第24期231-240,共10页
采用空间一维速度三维的磁流体模型研究了电子的非麦克斯韦分布对具有二次电子发射的磁化等离子体鞘层特性的影响.假设鞘层中电子速度服从非广延分布,离子在具有一定倾斜角度的磁场中被磁化.通过建立自洽的磁流体方程,研究了电子非广延... 采用空间一维速度三维的磁流体模型研究了电子的非麦克斯韦分布对具有二次电子发射的磁化等离子体鞘层特性的影响.假设鞘层中电子速度服从非广延分布,离子在具有一定倾斜角度的磁场中被磁化.通过建立自洽的磁流体方程,研究了电子非广延分布参数q及磁场强度和角度对等离子体鞘层玻姆判据、壁面悬浮电势、鞘边二次电子数密度、鞘层厚度、离子速度等的影响.研究表明,当电子速度分布偏离麦克斯韦分布时,非广延参数q值越大,玻姆判据的值越小,壁面电势越高,鞘边二次电子数密度增大,鞘层厚度减小,鞘层区域离子、电子数密度下降加快,且壁面附近离子数密度较高,离子3个方向的速度均降低.此外,随着磁场强度增大,鞘层厚度减小,鞘层区域离子、电子数密度下降加快;磁场角度越大,参数q值对壁面电势、鞘层厚度的影响程度越显著,在超广延、亚广延分布情况下壁面附近离子x方向速度随磁场角度变化呈相反趋势. 展开更多
关键词 非广延分布 二次电子发射 磁化鞘层 玻姆判据
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Study on the characteristics of non-Maxwellian magnetized sheath in Hall thruster acceleration region 被引量:1
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作者 陈龙 安宇豪 +4 位作者 孙少娟 段萍 姜博瑞 杨叶慧 崔作君 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第7期102-111,共10页
The secondary electron emission(SEE) and inclined magnetic field are typical features at the channel wall of the Hall thruster acceleration region(AR), and the characteristics of the magnetized sheath have a significa... The secondary electron emission(SEE) and inclined magnetic field are typical features at the channel wall of the Hall thruster acceleration region(AR), and the characteristics of the magnetized sheath have a significant effect on the radial potential distribution, ion radial acceleration and wall erosion. In this work, the magnetohydrodynamics model is used to study the characteristics of the magnetized sheath with SEE in the AR of Hall thruster. The electrons are assumed to obey non-extensive distribution, the ions and secondary electrons are magnetized.Based on the Sagdeev potential, the modified Bohm criterion is derived, and the influences of the non-extensive parameter and magnetic field on the AR sheath structure and parameters are discussed. Results show that, with the decrease of the parameter q, the high-energy electron leads to an increase of the potential drop in the sheath, and the sheath thickness expands accordingly,the kinetic energy rises when ions reach the wall, which can aggravate the wall erosion.Increasing the magnetic field inclination angle in the AR of the Hall thruster, the Lorenz force along the x direction acting as a resistance decelerating ions becomes larger which can reduce the wall erosion, while the strength of magnetic field in the AR has little effect on Bohm criterion and wall potential. The propellant type also has a certain effect on the values of wall potential,secondary electron number density and sheath thickness. 展开更多
关键词 Hall thruster magnetized sheath non-extensive distribution secondary electron emission
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