Naylor G
EURATOM/CCFE Fusion Association, Culham Science Centre, Abingdon, Oxfordshire, OX14 3DB, United Kingdom.
Rev Sci Instrum. 2010 Oct;81(10):10E110. doi: 10.1063/1.3479120.
The MAST Thomson scattering diagnostic has recently been upgraded to make electron density and temperature measurements at 130 points across the 1.5 m diameter of the plasma. The new system is able to take 240 measurements per second using eight Nd:YAG lasers, each running at 30 Hz. The exact firing time of these lasers is adjusted with 100 ns precision using a field programmable gate array based trigger unit. Trigger pulses are produced to fire the lamps of all lasers and the Q switches with the appropriate delay depending on the warm-up status. The lasers may be fired in rapid bursts so as to achieve a high temporal resolution over eight points separated down to the microsecond level. This trigger unit receives optical trigger events and signals from external sources, allowing the trigger sequences to be resynchronized to the start of the plasma pulse and further events during the shot such as the entry of a fuelling pellet or randomly occurring plasma events. This resynchronization of the laser firing sequence allows accurate and reproducible measurements of fast plasma phenomena.
MAST汤姆逊散射诊断仪最近进行了升级,能够在直径1.5米的等离子体范围内的130个点测量电子密度和温度。新系统使用八台Nd:YAG激光器,每秒能够进行240次测量,每台激光器的运行频率为30赫兹。这些激光器的确切触发时间通过基于现场可编程门阵列的触发单元以100纳秒的精度进行调整。根据预热状态,产生触发脉冲以触发所有激光器的灯和Q开关,并具有适当的延迟。激光器可以快速脉冲发射,以便在低至微秒级别的八个点上实现高时间分辨率。该触发单元接收来自外部源的光学触发事件和信号,使触发序列能够重新同步到等离子体脉冲的开始以及脉冲期间的进一步事件,如燃料弹丸的进入或随机发生的等离子体事件。激光发射序列的这种重新同步使得能够对快速等离子体现象进行准确且可重复的测量。