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首页> 外文期刊>Physics of atomic nuclei >Study of Kinetic Parameters of Globus-M Plasma by Thomson Scattering Using an Advanced Digital Polychromator
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Study of Kinetic Parameters of Globus-M Plasma by Thomson Scattering Using an Advanced Digital Polychromator

机译:用先进的数字多彩器对汤森散射的Globus-M等离子体动力学参数研究

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The local measurements of electron density and temperature by Thomson scattering (TS) diagnostics are essential for research of energy confinement, plasma heating, and control at nuclear fusion devices. This paper presents a digital filter polychromator designed for TS spectrum registration. A distinguishing feature of such a digital polychromator is the use of an analog-to-digital converter (ADC) having analog memory with discretization frequency of 5 GHz and 12-bit sampling. The low heat dissipation and compact design of the ADC allow us to integrate the recording and data handling systems in the spectral unit to obtain a stand-alone device that is totally isolated from other systems and equipment in the voltaic sense. The scattered laser radiation received from the plasma comes to the entrance of the polychromator through a fiber-optic cable, and the processed scattering signals and calculated electron density and temperature are available on a digital interface. The polychromator was tested within the Thomson scattering system at the Globus-M tokamak using two probing lasers: Nd:YAG 1064 nm and Nd:Glass 1055 nm operating with pulse energy up to 2J and FWHM of 4 and 40 ns, respectively. The employed ADCs allowed us to perform superfast signal digitizing in the oscilloscope mode and to demonstrate the possibility of stray signal time separation despite the modest size (similar to 1 m) of the vacuum chamber. The results of measurements performed during the plasma experiment at the Globus-M tokamak are presented, and their comparative analysis with the data obtained at the operating TS system is made.
机译:通过汤姆森散射(TS)诊断的电子密度和温度的局部测量对于对核聚变装置的能量限制,等离子体加热和控制进行研究至关重要。本文介绍了设计用于TS频谱注册的数字滤波器多色器。这种数字多彩器的区别特征是使用具有模拟存储器的模数转换器(ADC),其具有5GHz和12位采样的离散化频率。 ADC的低散热和紧凑设计允许我们集成光谱单元中的记录和数据处理系统,以获得与电压意义上的其他系统和设备完全隔离的独立设备。通过光纤电缆从等离子体接收的散射激光辐射通过光纤电缆来进入多色器的入口,并且在数字界面上可获得处理的散射信号和计算的电子密度和温度。使用两种探测激光器在Globus-M托卡马克的汤姆森散射系统内测试多色器:Nd:YAG 1064nm和Nd:玻璃1055nm,脉冲能量分别与4和40ns为4和40ns的2J和FWHM操作。所采用的ADCS允许我们在示波器模式下执行超快速信号数字化,并且尽管诸如真空室的尺寸(类似于1米),但是展示了杂散信号时间分离的可能性。提出了在Globus-M托卡马克的等离子体实验期间进行的测量结果,并进行了与操作TS系统中获得的数据的对比分析。

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