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Development of Vacuum Ultraviolet Emission Source Using a Cone-Shaped O-2/He Hollow Cathode Discharge

机译:使用锥形O-2 / HE空心阴极放电的真空紫外发射源的研制

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摘要

A compact vacuum ultraviolet (VUV) lamp using helium and oxygen plasma has been developed to emit atomic oxygen triplet S-3(1)-P-3(2, 1, 0) lines, which can be applied to measure absolute oxygen density by a method of absorption spectroscopy. The VUV lamp consists of a negatively biased micro-hollow cathode with a hole of 700 mu m diameter and grounded hole-electrode carrying the gasses. The discharge was confined in the hollow cathode hole when the operating pressure was near 30 Torr in both the pure helium and helium based oxygen diluted plasma. In this condition, the spectral lines of the atomic oxygen triplet emission (130.2, 130.5, 130.6 nm) were observed and the atomic excitation temperature showed higher value than that of a normal glow phase. Typical I-V characteristic of hollow cathode mode such as negative resistivity was also discussed in both the helium and helium-oxygen discharge at the pressure of 30 Torr.
机译:使用氦和氧等离子体的紧凑型真空紫外线(VUV)灯已经开发出来发射原子氧三元体S-3(1)-P-3(2,10)系,其可以应用于测量绝对氧密度 一种吸收光谱法。 VUV灯由带负偏置的微空心阴极组成,具有700μm的孔,直径为700μm,接地的孔电极承载气体。 当在纯氦气和氦基氧稀释等离子体中,当操作压力接近30托时,放电局限于空心阴极孔中。 在这种情况下,观察到原子氧三元发射(130.2,130.5,130.6nm)的光谱线,原子激发温度显示出比正常发光相的值更高。 在30托的压力下,还在氦气和氦气排出中讨论了中空阴极模式的典型I-V特性,例如负电阻率。

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