Sun Pengjun, Liu Xianzi, Ren Yang, Xu Guosheng, Chen Ran, Qian Jing, Li Xiaoliang, Domier Calvin, Dannenberg Jon, Yao Ke, Zhu Yilun, Luhmann Neville
Institute of Plasma Physics, Chinese Academy of Sciences, Hefei, Anhui 230031, China.
University of California at Davis, Davis, California 95616, USA.
Rev Sci Instrum. 2024 Aug 1;95(8). doi: 10.1063/5.0219393.
A pioneering 4-channel, high-k poloidal, millimeter-wave collective scattering system has been successfully developed for the Experimental Advanced Superconducting Tokamak (EAST). Engineered to explore high-k electron density fluctuations, this innovative system deploys a 270 GHz mm-wave probe beam launched from Port K and directed toward Port P (both ports lie on the midplane and are 110° part), where large aperture optics capture radiation across four simultaneous scattering angles. Tailored to measure density fluctuations with a poloidal wavenumber of up to 20 cm-1, this high-k scattering system underwent rigorous laboratory testing in 2023, and the installation is currently being carried out on EAST. Its primary purpose lies in scrutinizing ion and electron-scale instabilities, such as the electron temperature gradient (ETG) mode, by furnishing measurements of the kθ (poloidal wavenumber) spectrum. This advancement significantly bolsters the capacity to probe high-k electron density fluctuations within the framework of EAST. Beam tracing and data interpretation modules developed for both EAST and NSTX-U high-k scattering diagnostics are described.
一种开创性的四通道、高k极向毫米波集体散射系统已成功为超导托卡马克实验装置(EAST)研制出来。该创新系统旨在探索高k电子密度涨落,它部署了一束从K端口发射并指向P端口(两个端口都位于中平面且相距110°)的270吉赫兹毫米波探测光束,在P端口,大孔径光学器件能同时在四个散射角捕获辐射。为测量极向波数高达20厘米⁻¹的密度涨落量身定制,这个高k散射系统在2023年经历了严格的实验室测试,目前正在EAST上进行安装。其主要目的在于通过提供kθ(极向波数)谱的测量结果来仔细研究离子和电子尺度的不稳定性,比如电子温度梯度(ETG)模。这一进展显著增强了在EAST框架内探测高k电子密度涨落的能力。文中描述了为EAST和NSTX-U高k散射诊断开发的光束追踪和数据解释模块。