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磁控溅射铁磁性靶材的研究进展 被引量:20
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作者 杨长胜 程海峰 +3 位作者 唐耿平 李效东 楚增勇 周永江 《真空科学与技术学报》 EI CAS CSCD 北大核心 2005年第5期372-377,共6页
磁控溅射铁磁性材料是制备高性能磁性薄膜的主要方法。由于铁磁性靶材的磁屏蔽效应,实现磁控溅射较难,这是限制铁磁性材料镀膜的一个重要因素。本文综述了国内外对这一问题的各种解决方法,分析了其优缺点。希望为国内相关单位的同行在... 磁控溅射铁磁性材料是制备高性能磁性薄膜的主要方法。由于铁磁性靶材的磁屏蔽效应,实现磁控溅射较难,这是限制铁磁性材料镀膜的一个重要因素。本文综述了国内外对这一问题的各种解决方法,分析了其优缺点。希望为国内相关单位的同行在铁磁性靶材和装置的设计上提供有益的帮助。 展开更多
关键词 等离子体磁聚 性靶材 靶材设计 控溅射
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Laser-Plasma Interaction in Presence of an Obliquely External Magnetic Field:Application to Laser Fusion without Radioactivity
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作者 M.Mobaraki S.Jafari 《Communications in Theoretical Physics》 SCIE CAS CSCD 2016年第8期237-243,共7页
In this paper, the nonlinear interaction of ultra-high power laser beam with fusion plasma at relativistic regime in the presence of obliquely external magnetic field has been studied. Imposing an external magnetic fi... In this paper, the nonlinear interaction of ultra-high power laser beam with fusion plasma at relativistic regime in the presence of obliquely external magnetic field has been studied. Imposing an external magnetic field on plasma can modify the density profile of the plasma so that the thermal conductivity of electrons reduces which is considered to be the decrease of the threshold energy for ignition. To achieve the fusion of Hydrogen–Boron(HB) fuel,the block acceleration model of plasma is employed. Energy production by HB isotopes can be of interest, since its reaction does not generate radioactive tritium. By using the inhibit factor in the block model acceleration of plasma and Maxwell's as well as the momentum transfer equations, the electron density distribution and dielectric permittivity of the plasma medium are obtained. Numerical results indicate that with increasing the intensity of the external magnetic field, the oscillation of the laser magnetic field decreases, while the dielectric permittivity increases. Moreover, the amplitude of the electron density becomes highly peaked and the plasma electrons are strongly bunched with increasing the intensity of external magnetic field. Therefore, the magnetized plasma can act as a positive focusing lens to enhance the fusion process. Besides, we find that with increasing θ-angle(from oblique external magnetic field) between 0 and 90°, the dielectric permittivity increases, while for θ between 90° and 180°, the dielectric permittivity decreases with increasing θ. 展开更多
关键词 laser-plasma interaction external magnetic field laser fusion HB fuel
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