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Study of rotational temperature of oxygen DC glow discharge in Silica and Pyrex discharge tubes

机译:二氧化硅和派热克斯放电管中氧气直流辉光放电的旋转温度研究

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Active DC glow discharges in oxygen have been studied in Silica and Pyrex discharge tubes for medium pressures up to 550 Pa and for discharge currents up to 40 mA. Electric field strength measured by a double-probe technique was found to increase with the pressure and to decrease with the discharge current, which is typical for DC glow discharges. We have focused on the emitted radiation. The rotational temperature (T-rot) of molecular oxygen was determined from the P-P and (P)Q branches of the well-resolved atmospheric A-band of molecular oxygen at 760 nm. Good agreement between values of T-rot obtained from particular branches was found. The increase of the rotational temperature with increasing pressure and discharge current has been observed in both discharge tubes, however, the values of rotational temperature were systematically higher in the tube made of Pyrex glass. This difference was explained by the particular thermal conductivity of the tube material.
机译:在二氧化硅和派热克斯放电管中已经研究了氧气中的主动直流辉光放电,用于中等压力(最高550 Pa)和最高放电电流40 mA。发现通过双探针技术测量的电场强度随压力增加而随放电电流降低,这对于直流辉光放电是典型的。我们专注于发射的辐射。分子氧的旋转温度(T-rot)由分子氧在760 nm的良好分辨的大气A带的P-P和(P)Q分支确定。发现从特定分支获得的T-腐烂值之间具有良好的一致性。在两个放电管中都观察到旋转温度随压力和放电电流的增加而增加,但是,在耐热玻璃玻璃制的管中,旋转温度的值总体上较高。这种差异是由管材的特殊导热性解释的。

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