Author Affiliations
Abstract
1 Research Center of Laser Fusion, Chinese Academy of Engineering Physics, Mianyang 621900, China
2 Science and Technology on Plasma Physics Laboratory, Mianyang 621900, China
3 IFSA Collaborative Innovation Center, Shanghai Jiao Tong University, Shanghai 200240, China
Beryllium carbide (Be2C) thin films have proven to be promising ablation materials, but the properties of Be2C coatings of the greater thickness required for inertial confinement fusion capsules are still unknown. In this work, Be2C coatings of various thicknesses (0.3–32.9 μm) are prepared by DC reactive magnetron sputtering. The influence of thickness on crystal properties, microstructure, and optical properties is investigated. The results indicate that the crystallinity of polycrystalline Be2C films improves with increasing thickness, while the grain size (~5 nm) and texture properties (without a preferred orientation) have only a weak dependence on thickness. A uniform featureless microstructure and smooth surface (root mean square roughness ~8 nm) are observed even in thick (32.9 μm) films, despite the presence of defects induced by contaminants. High densities (2.19–2.31 g/cm3) and high deposition rates (~270 nm/h) are realized, with the latter corresponding to the upper limit for the fabrication of Be2C coatings by magnetron sputtering. The transmittance of the films in the near-infrared region remains at a high level (>80%) and has only a weak dependence on thickness, while the transmittance in the visible region decreases with increasing thickness. In addition, the optical bandgap is estimated to be about 1.9 eV and decreases with increasing thickness owing to the presence of defects.
Matter and Radiation at Extremes
2019, 4(4): 045403
Author Affiliations
Abstract
1 Research Center of Laser Fusion, China Academy of Engineering Physics, Mianyang621900, China
2 Science and Technology on Plasma Physics Laboratory, Mianyang621900, China
The Be-based materials with many particular properties lead to an important research subject. The investigation progresses in the fabrication technologies are introduced here, including main three kinds of Be-based materials, such as Be–Cu capsule, $\text{Be}_{2}\text{C}$ ablator and high-purity Be material. Compared with the pioneer workgroup on Be-based materials, the differences in Be–Cu target fabrication were described, and a grain refinement technique by an active hydrogen reaction for Be coating was proposed uniquely. $\text{Be}_{2}\text{C}$ coatings were first prepared by the DC reactive magnetron sputtering with a high deposition rate $({\sim}300~\text{nm}/\text{h})$. Pure polycrystalline $\text{Be}_{2}\text{C}$ films with uniform microstructures, smooth surface, high density $({\sim}2.2~\text{g}\cdot \text{cm}^{3})$ and good optical transparency were fabricated. In addition, the high-purity Be materials with metal impurities in a ppm magnitude were fabricated by the pyrolysis of organometallic Be.
Be-based materials Be–Cu capsule Be2C ablator high purity 
High Power Laser Science and Engineering
2017, 5(2): 02000e10
罗炳池 1,2,*李恺 1,2何玉丹 1牛高 1,2[ ... ]唐永建 1
作者单位
摘要
1 中国工程物理研究院 激光聚变研究中心, 四川 绵阳 621900
2 等离子体物理重点实验室, 四川 绵阳 621900
可控核聚变反应是科学家用来解决能源缺乏和发展可持续能源的理想途径,为此美国开展了惯性约束聚变(ICF)研究,建设了国家点火装置(NIF),旨在实验室演示核聚变反应,为惯性约束聚变能(IFE)发展指明方向。制靶是NIF点火工程三大主体之一,如何制备满足设计需求的靶丸成为科学家不懈努力的追求目标。详细介绍了NIF工程中主要候选Be靶丸需求背景、研究现状、Be靶优势、靶参数设计要点、靶丸制备技术,以及制靶过程中存在的关键技术问题,为我国Be靶制备及制靶能力建设提供参考信息。
惯性约束聚变 铍靶丸 靶参数 inertial confinement fusion beryllium target target parameter National Ignition Facility NIF 
强激光与粒子束
2013, 25(12): 3259

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