首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >ABSORPTION MEASUREMENTS ON A LOW-PRESSURE, INDUCTIVELY COUPLED, ARGON-MERCURY DISCHARGE FOR LIGHTING PURPOSES .1. THE GAS TEMPERATURE AND ARGON METASTABLE STATES DENSITY
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ABSORPTION MEASUREMENTS ON A LOW-PRESSURE, INDUCTIVELY COUPLED, ARGON-MERCURY DISCHARGE FOR LIGHTING PURPOSES .1. THE GAS TEMPERATURE AND ARGON METASTABLE STATES DENSITY

机译:照明目的低压,感应耦合,氩-汞放电的吸收率测量1。气体温度和亚稳态密度

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The gas temperature and the absolute density of the argon 4s(3)P(2) level in an 80 W inductively coupled low-pressure argon-mercury plasma are determined for three different argon filling pressures. This is done by measuring the line profile of the 4s(3)P(2) --> 4p(3)D(3) transition in argon, using a tuneable laser diode. Since the width of this argon line is found to depend on the kinetic heavy particle temperature only, radial profiles of the gas temperature can be obtained. It turns out that the maximum gas temperature in this discharge (550-810 K depending on the filling pressure) is significantly higher than that in a common tubular fluorescent lamp. From the radial distribution of the argon 4s density it can be concluded that the maxima of the electron density and of the electron temperature are situated close to the coil. it is also found that the position of these maxima depends on the argon filling pressure. [References: 18]
机译:针对三种不同的氩气填充压力,确定了80 W感应耦合低压氩汞等离子体中的气体温度和4s(3)P(2)氩气的绝对密度。通过使用可调激光二极管测量氩气中4s(3)P(2)-> 4p(3)D(3)跃迁的线轮廓来完成。由于发现该氩线的宽度仅取决于动态重粒子温度,因此可以获得气体温度的径向分布。事实证明,这种放电的最高气体温度(取决于填充压力为550-810 K)明显高于普通的管状荧光灯。从氩气4s密度的径向分布可以得出结论,电子密度和电子温度的最大值位于线圈附近。还发现这些最大值的位置取决于氩气填充压力。 [参考:18]

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