Pbfaⅱ强锂离子高温实验综合诊断装置

R. Leeper, J. Bailey, A. Carlson, G. Chandler, M.S. Derzon, R.J. Dukart, D. Hebron, L. P. Mix, A. Moats, T. Nash, D. Noack, W. Olson, J. Porter, C. Ruiz, F.A. Schmidlapp, M. Stark, J. Torres, D. Wenger, R. Olsen
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摘要

瞬态内探头(TIP)磁场诊断技术的发展。J.P. Galambos,马萨诸塞州Bohnet, T.R. Jarboe, A.T. Mattick,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,,。该概念包括将探测器加速到高速(2.2 Km/s),以最大限度地减少探测器暴露于等离子体的时间。探针内部的法拉第旋转用于测量局部磁场。氩气激光照亮由法拉第旋转材料组成的探针,该探针带有一个反向反射器,该反射器将入射光反射到探测系统中。将展示光气枪和光学检测系统的性能结果。迄今为止,该气枪已经进行了广泛的测试,始终保持在2到3 ms之间的速度。探针和探测方案通过将探针放入静态磁场中进行了测试。磁场分辨率达到20高斯,空间分辨率达到5毫米。系统频率响应为10Mhz。目前正在进行将诊断系统与实验室等离子体实验相结合的工作。具体来说,开发了一个气体界面系统,以防止氦枪口气体随探针进入等离子体室。此外,在气枪加速过程中,探头必须与保护探头的保护罩分开。数据将显示各种分离技术的结果。本文还将介绍说明气界面系统有效性的压力测量结果。该诊断计划在华盛顿大学的螺旋注入Toms (HIT)上进行测量
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive Diagnostic Set For Intense Lithium Ion Hohlraum Experiments On Pbfa II
Development of Transient Internal Probe (TIP) Magnetic Field Diagnostic. J.P. Galambos, MA. Bohnet, T.R. Jarboe, A.T. Mattick, t h d j $ %&+ The Transient Internal Probe (TIP) is designed to permit measurement of internal magnetic fields in hot, high density plasmas. The concept consists of accelerating a probe to high velocities (2.2 Km/s) in order to minimize probe exposure time to plasma. Faraday rotation within the probe is used to measure the local magnetic field. An Argon laser illuminates the probe consisting of a Faraday-rotator material with a retro-reflector that r e m s the incident light to the detection system. Performance results of the light gas gun and optical detection system will shown. To date, the gas gun has been extensively tested consistently achieving velocities between 2 and 3 Ms. The probe and detection scheme have been tested by dropping the probe through a static magnetic field. Magnetic field resolution of 20 gauss and spatial resolution of 5 mm has been achieved. System frequency response is 10Mhz. Work is currently being conducted to integrate the diagnostic system with laboratory plasma experiments. Specifically a gas interfaced system has been developed to prevent helium muzzle gas from entering the plasma chamber with the probe. Additionally the probe must be separated from the sabot which protects the probe during acceleration in the gas gun. Data will be presented showing the results of various separation techniques. Results of pressure measurements illustrating the effectiveness of the gas interface system will also be presented. The diagnostic is scheduled to make measurements on the Helicity Injected Toms (HIT) at the University of Washington. 4P29
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