用于激光/星团相互作用的便携式兆高斯磁场发生器的设计与性能

M. Wisher, W. Bang, R. Bengtson, S. Lewis, M. McCormick, H. Quevedo, K. Struve
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引用次数: 2

摘要

我们的目标是创造一个独特的环境,包括磁化高能量密度等离子体(n ~ 1019 cm-3, T ~ 10 keV),由激光照射原子或分子团簇在兆高磁场中产生。使用氘或CD4团簇,DD聚变中子产率可达107个中子/次。对磁场源的要求是:轴上磁场强度为1-2兆高斯,在1 cm3的圆柱形体积中(10 keV等离子体达到β~ 1),可移植性,因此可以安装在激光设施中,例如德克萨斯州佩塔瓦激光器(TPW),在真空条件下运行,恒定场为~100 ns。在德克萨斯大学奥斯汀分校(UT)和桑迪亚国家实验室(SNL)的合作下,我们设计、建造并测试了一个适用于TPW集群聚变实验的脉冲电源。一些突出的设计特点包括使用低电感电路元件,单匝线圈,10个3.1 μF 100 kV高能量密度电容器(每个15.5 kJ),每个电容器一个高压火花间隙开关。每个电容器通过六根高压电缆放电进入一个锥形传输线,该传输线通过一个类似于SNL的Z机的绝缘体堆进入真空室。电流上升时间为1.7 μs,峰值电流可达2 MA;系统电感约为48nh,包括单匝线圈。一个主要的挑战是在真空条件下驱动电流通过线圈,而不会造成明显的电感损失或损坏真空系统。单匝线圈,由1/8”厚铜制成,每次射击都会被摧毁。清除抛丸碎片,更换线圈,达到所需的真空压力≤10-5托,将重复率降低到每天2 - 3次。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The design and performance of a portable megagauss magnetic field generator for laser/cluster interactions
Our objective is to create a unique environment consisting of a magnetized high energy density plasma (n ~ 1019 cm-3, T ~ 10 keV) produced by laser irradiation of atomic or molecular clusters in a megagauss magnetic field. With deuterium or CD4 clusters the DD fusion neutron yield can be up to 107 neutrons/shot. Requirements on the magnetic field source are: on-axis field strength of 1-2 megagauss in a cylindrical volume of 1 cm3 (reaching β~ 1 for 10 keV plasma), portability so it can be installed at laser facilities e.g. Texas Petawatt Laser (TPW), operation in vacuum conditions, and constant field for ~100 ns. In a collaboration between the University of Texas at Austin (UT) and Sandia National Laboratories (SNL), we have designed, built, and tested a pulsed power source suitable for cluster fusion experiments at the TPW. Some of the salient design features include use of low inductance circuit elements, a single-turn coil, ten 3.1 μF 100 kV high energy density capacitors (15.5 kJ each), and one high voltage spark gap switch per capacitor. Each capacitor discharges via six high voltage cables into a conical transmission line, which feeds into a vacuum chamber through an insulator stack similar to that of the Z machine at SNL. Current rise time is 1.7 μs with peak current up to 2 MA; system inductance is about 48 nH, including the single-turn coil. A major challenge was to drive the current through the coil in vacuum conditions without a significant inductance penalty or damage to the vacuum system. The single-turn coil, made from 1/8" thick copper, is destroyed every shot. Clearing shot debris, replacing the coil, and achieving the required vacuum pressure of ≤10-5 Torr reduces the repetition rate to 2 - 3 shots per day.
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