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Present Status of the Nd:YAG Thomson Scattering System Development for Time Evolution Measurement of Plasma Profile on Heliotron J

机译:Nd:YAG汤姆逊散射系统的发展现状,用于太阳电浆J的等离子体轮廓的时间演化测量

摘要

A new high repetition rate Nd:YAG Thomson scattering system is developed for the Heliotron J helical device. A main purpose of installing the new system is the temporal evolution measurement of a plasma profile for improved confinement physics such as the edge transport barrier (H-mode) or the internal transport barrier of the helical plasma. The system has 25 spatial points with ~10 mm resolution. Two high repetition Nd:YAG lasers (> 550 mJ@50 Hz) realize the measurement of the time evolution of the plasma profile with ~10 ms time intervals. Scattered light is collected by a large concave mirror (D = 800 mm, f/2.25) with a solid angle of ~100 mstr and transferred to interference filter polychromators by optical fiber bundles in a staircase form. The signal is amplified by newly designed fast preamplifiers with DC and AC output, which reduces the low frequency background noise. The signals are digitized with a multi-event QDC, fast gated integrators. The data acquisition is performed by a VME-based system operated by the CINOS.
机译:为Heliotron J螺旋装置开发了一种新的高重复率Nd:YAG Thomson散射系统。安装新系统的主要目的是为了改善等离子体的局限性,例如边缘传输势垒(H模式)或螺旋等离子体的内部传输势垒,对等离子体轮廓进行时间演变测量。该系统有25个空间点,分辨率约为10毫米。两个高重复频率的Nd:YAG激光器(> 550 mJ @ 50 Hz)实现了以约10毫秒的时间间隔测量等离子体轮廓的时间演变。散射光由大凹面镜(D = 800 mm,f / 2.25)以约100 mstr的立体角收集,并通过阶梯形光纤束传输到干涉滤光片多色仪。信号由新设计的带有直流和交流输出的快速前置放大器放大,从而降低了低频背景噪声。信号通过多事件QDC快速门控积分器数字化。数据采集​​是由CINOS运营的基于VME的系统执行的。

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