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用于MAST球形托卡马克的束发射光谱湍流成像系统。

Beam emission spectroscopy turbulence imaging system for the MAST spherical tokamak.

作者信息

Field A R, Dunai D, Gaffka R, Ghim Y-c, Kiss I, Mészáros B, Krizsanóczi T, Shibaev S, Zoletnik S

机构信息

EURATOM/UKAEA Fusion Association, Culham Science Centre, Abingdon, Oxon, United Kingdom.

出版信息

Rev Sci Instrum. 2012 Jan;83(1):013508. doi: 10.1063/1.3669756.

Abstract

A new beam emission spectroscopy turbulence imaging system has recently been installed onto the MAST spherical tokamak. The system utilises a high-throughput, direct coupled imaging optics, and a single large interference filter for collection of the Doppler shifted D(α) emission from the ~2 MW heating beam of ~70 keV injection energy. The collected light is imaged onto a 2D array detector with 8 × 4 avalanche photodiode sensors which is incorporated into a custom camera unit to perform simultaneous 14-bit digitization at 2 MHz of all 32 channels. The array is imaged at the beam to achieve a spatial resolution of ~2 cm in the radial (horizontal) and poloidal (vertical) directions, which is sufficient for detection of the ion-scale plasma turbulence. At the typical photon fluxes of ~10(11) s(-1) the achieved signal-to-noise ratio of ~300 at the 0.5 MHz analogue bandwidth is sufficient for detection of relative density fluctuations at the level of a few 0.1%. The system is to be utilised for the study of the characteristics of the broadband, ion-scale turbulence, in particular its interaction with flow shear, as well as coherent fluctuations due to various types of MHD activity.

摘要

一种新型的束发射光谱湍流成像系统最近已安装到MAST球形托卡马克装置上。该系统采用高通量、直接耦合成像光学器件以及一个大型干涉滤光片,用于收集来自注入能量约为70keV、加热功率约为2MW的加热束产生的多普勒频移D(α)发射光。收集到的光被成像到一个由8×4雪崩光电二极管传感器组成的二维阵列探测器上,该探测器集成在一个定制的相机单元中,以2MHz的频率对所有32个通道同时进行14位数字化处理。该阵列在光束处成像,在径向(水平)和极向(垂直)方向上实现约2cm的空间分辨率,这足以检测离子尺度的等离子体湍流。在典型光子通量约为10(11)s(-1)的情况下,在0.5MHz模拟带宽下实现的约300的信噪比足以检测到百分之零点几水平的相对密度波动。该系统将用于研究宽带离子尺度湍流的特性,特别是其与流动剪切的相互作用,以及各种磁流体动力学活动引起的相干波动。

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