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Spectral Characteristics of the Barrier Discharge on Mercury Diiodide Vapor with Neon Mixture

机译:含氖混合物的二碘化汞蒸气的阻挡放电光谱特征

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Aims: To investigate spectral characteristics of a high-frequency barrier discharge plasma of atmospheric pressure on mercury diiodide vapor with neon mixture. Study Design: A small cylindrical radiator with a single dielectric barrier of capacitance Cd = 40 pF made of a quartz tube was used for the experiments. Inside along the axis there was a molybdenum electrode with a diameter 1 mm, an external electrode 30 mm in length was made of a mesh with a transmittance 70%. Place and Duration of Study: Department of Quantum electronics, Faculty of Physics, Uzhhorod National University, between June 2017 and September 2017. Methodology: The high-voltage generator with an average power of up to 100 W was used to apply sinusoidal voltage (up to 7 kV and 130 kHz) to the electrodes of the radiator. The radiation spectra were recorded using a Jobin Yvon TRIAX 550 spectrometer (1200 lines / mm and 3600 lines / mm, a slit 0.02 mm, a quartz optical fiber and a Spectrum ONE CCD detector cooled with liquid nitrogen. Results: Intense quasicontinuous emission of spectral bands with a maximum at λ = 443 nm and 306 nm, as well as 342 nm of exciplex molecules mercury monoiodide and iodide molecules have been revealed. The main part of the emission of spectral bands is concentrated in violet-blue spectral region, namely, 439-446 nm, the relative brightness of which is higher than the brightness of other spectral bands and lines. Conclusion: The gas discharge excilamp at high pumping frequencies on mercury diiodide with neon mixture can be created with operating life higher than the excilamp, where the buffer gas is used helium.
机译:目的:研究大气压力下的高频阻挡放电等离子体对含氖混合物的二碘化汞蒸气的光谱特性。研究设计:实验用石英管制成的具有单个电容C d = 40 pF的单介质势垒的小型圆柱形辐射器。沿着轴的内部有直径为1mm的钼电极,长度为30mm的外部电极由具有70%的透射率的网制成。研究的地点和时间:2017年6月至2017年9月,乌日霍罗德国立大学物理系量子电子学系。方法:采用平均功率高达100 W的高压发生器施加正弦电压(最大至7 kV和130 kHz)。使用Jobin Yvon TRIAX 550光谱仪(1200行/毫米和3600行/毫米,狭缝0.02毫米,石英光纤和用液氮冷却的Spectrum ONE CCD检测器)记录辐射光谱。结果:强烈的准连续光谱发射揭示了在λ= 443 nm和306 nm处有最大的能带,以及342 nm的激基复合物分子一碘化汞和碘化物分子,光谱带发射的主要部分集中在紫蓝光谱区,即439-446 nm,其相对亮度高于其他光谱带和谱线的结论结论:在高抽运频率下,二碘化汞与氖气混合物的气体放电激安可产生的使用寿命比该激安高。缓冲气体使用氦气。

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