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Early Time Studies of Cylindrical Liner Implosions at 1 MA on COBRA

机译:在眼镜蛇1 mA的圆柱形衬里内墨的早期研究

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Tests of the magnetized liner inertial fusion (MagLIF) concept will make use of the 27 MA Z machine at Sandia National Laboratories, Albuquerque, to implode a cylindrical metal liner to compress and heat preheated, magnetized plasma contained within it. While most pulsed power machines produce much lower currents than the Zmachine, there are issues that can still be addressed on smaller scale facilities. Recent work on the Cornell Beam Research Accelerator (COBRA) has made use of 10 mm long and 4 mm diameter metal liners having different wall thicknesses to study the initiation of plasma on the liner's surface as well as axial magnetic field compression [P.-A. Gourdain et al., Nucl. Fusion 53, 083006 (2013)]. This report presents experimental results with non-imploding liners, investigating the impact the liner's surface structure has on initiation and ablation. Extreme ultraviolet (XUV) imaging and optical 12 frame camera imaging were used to observe and assess emission non-uniformities as they developed. Axial and side-on interferometry was used to determine the distribution of plasma near the liner surface, including the impact of non-uniformities during the plasma initiation and ablation phases of the experiments.
机译:磁化衬里惯性融合(Maglif)概念的测试将在桑迪亚国家实验室,阿尔伯克基进行27 Ma Z机器,以将圆柱形金属衬垫造成压缩和热预热,磁化等离子体中包含的热量。虽然大多数脉冲电力机器产生比ZMachine更低的电流,但有问题仍然可以在较小的比例设施上解决。康奈尔梁研究加速器(COBRA)最近的工作已经采用了10毫米长和4毫米直径的金属衬垫,具有不同的壁厚,以研究衬里表面上等离子体的启动以及轴向磁场压缩[P.-a 。 Gourdain等人。,Nucl。 Fusion 53,083006(2013)]。本报告提出了实验结果,采用非普通衬垫​​,调查衬里的表面结构对启动和消融的影响。极端紫外线(XUV)成像和光学12帧摄像机成像用于观察和评估它们的发射不均匀性。使用轴向和侧面干涉测量法测定衬垫表面附近等离子体的分布,包括在血浆开始期间的不均匀性和实验的消融阶段的影响。

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