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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Enhancement of IR transparency of arsenic sulfide materials via plasma-chemical conversion of the initial arsenic monosulfide in low-temperature RF plasma
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Enhancement of IR transparency of arsenic sulfide materials via plasma-chemical conversion of the initial arsenic monosulfide in low-temperature RF plasma

机译:通过初始砷半硫化物在低温rf等离子体中的等离子体化学转化增强砷硫化物材料的IR透明度

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For the first time the direct conversion of arsenic monosulfide (As4S4) in low-temperature non-equilibrium radio frequency (40 MHz) argon plasma discharge at low pressure (0.1 Torr) was studied in terms of the preparation of arsenic sulfide films of different chemical content. In this case, arsenic monosulfide was used as the only precursor. The degree of arsenic monosulfide conversion, and, respectively, the chemical content of the samples was varied through a change of plasma parameters-the electron density and the temperature in the plasma discharge. The optical emission spectra of plasma of the (Ar-As4S4) mixture at different energy inputs were studied to clarify the routes of initiation of chemical interaction. The possible mechanism has been assumed. The expansion of the IR transparency window due to the change of structural properties of the materials in the plasma was investigated and discussed.
机译:首次在低压(0.1托)的低温非平衡射频(40MHz)中的砷硫化物(AS4S4)的直接转化在低压(0.1托)的氩气等方面是根据不同化学的砷硫化物薄膜进行研究 内容。 在这种情况下,使用砷硫化物作为唯一的前体。 通过等离子体参数的变化和等离子体放电中的电子密度和温度分别通过变化来改变样品的化学含量的砷硫化物转化程度。 研究了不同能量输入的(AR-AS4S4)混合物的血浆的血浆光发射光谱,以阐明化学相互作用的启动途径。 可能的机制已经假设。 研究了IR透明度窗口的扩展,并讨论了等离子体中材料的结构性质的变化。

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