Lan Tao, Bai Zeqi, Zhang Han, Mao Zhiling, Ding Weixing, Wu Jie, Wang Ke, Sun Xuan, Wang Min, Mao Wenzhe, Zhang Sen, Dong Qilong, Zhou Yongkang, Chen Chen, Wang Tianxiong, Lu Pengcheng, Huang Yuhua, Wu Zhengwei, Wu Jiaren, Deng Peng, Wei Zian, Wen Xiaohui, Wang Hai, Zhou Chu, Liu Ahdi, Xie Jinlin, Li Hong, Liu Wandong, Xiao Chijin, Zhuang Ge
Department of Plasma Physics and Fusion Engineering, University of Science and Technology of China, Hefei 230026, China.
Plasma Physics Laboratory, University of Saskatchewan, Saskatoon, Saskatchewan S7N 5E2, Canada.
Rev Sci Instrum. 2024 Oct 1;95(10). doi: 10.1063/5.0212144.
A two-color homodyne Mach-Zehnder optical fiber interferometer is developed for the measurement of electron and neutral particle densities in a high-density capsule θ-pinch device. The interferometer leverages the disparate contributions of distinct particles to the refractive index across two discrete wavelengths of 1310 and 1550 nm and incorporates the contributions of both electron and neutral particle densities to the phase shift in the plasma. The temporal evolutions of line-integrated electron and neutral argon densities are successfully measured by the interferometer. Comparing the electron density waveforms under various working gas pressures as well as the results obtained using the monochromatic and two-color measurements, it is inferred that the influence of neutral particle density can be neglected when measuring the electron density using a long-wavelength laser. Moreover, the maximum electron density is linearly correlated with the capacitor bank voltage for the θ-pinch device (5-9 kV). Overall, the proposed interferometer is capable of simultaneously measuring the electron and neutral particle densities.
开发了一种双色零差马赫-曾德尔光纤干涉仪,用于测量高密度胶囊θ箍缩装置中的电子和中性粒子密度。该干涉仪利用了不同粒子在1310和1550 nm两个离散波长上对折射率的不同贡献,并将电子和中性粒子密度对等离子体相移的贡献都考虑在内。干涉仪成功测量了线积分电子和中性氩密度的时间演化。通过比较不同工作气体压力下的电子密度波形以及使用单色和双色测量获得的结果,可以推断,在使用长波长激光测量电子密度时,中性粒子密度的影响可以忽略不计。此外,θ箍缩装置(5-9 kV)的最大电子密度与电容器组电压呈线性相关。总体而言,所提出的干涉仪能够同时测量电子和中性粒子密度。