2019
DOI: 10.1016/j.jqsrt.2018.10.010
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Measurement of pressure shift and broadening for Ar and Kr 4s[3/2]2 → 4p[5/2]3 transition in rare gases using diode-laser spectroscopy

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Cited by 15 publications
(4 citation statements)
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“…The good stability of the laser wavelength setting is demonstrated by the mole fraction variations at constant pressure in Figure . The measured blue-shifts in He are roughly 4 to 6 MHz/Torr, , roughly matching the 2 GHz line width of the Ti:S laser over this range of pressure variation. The blue-shift effect may contribute to the slight reduction in optically pumped gain observed at 500 Torr.…”
Section: Results and Analysissupporting
confidence: 66%
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“…The good stability of the laser wavelength setting is demonstrated by the mole fraction variations at constant pressure in Figure . The measured blue-shifts in He are roughly 4 to 6 MHz/Torr, , roughly matching the 2 GHz line width of the Ti:S laser over this range of pressure variation. The blue-shift effect may contribute to the slight reduction in optically pumped gain observed at 500 Torr.…”
Section: Results and Analysissupporting
confidence: 66%
“…The 1s 5 → 2p 9 absorption line is well-known to be blue-shifted with increasing pressure by collisions with He. 19,37,38 During the pressure variation experiments, the wavelength of the 1s 5 → 2p 9 pump laser was held constant, peaked up on the transition at 300 Torr. The good stability of the laser wavelength setting is demonstrated by the mole fraction variations at constant pressure in Figure 6.…”
Section: ■ Results and Analysismentioning
confidence: 99%
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“…Moreover, often in thermal plasmas the gas temperature was not homogeneous and well defined 29,28,32 , introducing extra uncertainty on measured coefficients. But after the event of the spectrally narrow band tunable diode lasers and their use in absorption spectroscopy (TDLAS) technique, the correction of the apparatus function width was no more needed and the pressure induced widths and shifts of many argon lines ending on the four lowest excited states of argon (two metastable Ar*(1s3) and Ar*(1s5) and two resonant Ar*(1s2) and Ar*(1s4) 33 ), which are always highly populated in argon plasmas, have been measured by several groups 34,35,36,37,38,39,40 41 . However, none of the above cited publications provided the pressure broadening coefficients of the 772.38 nm (1s5-2p7) and 772.42 nm (1s3-2p2) lines, which are studied in this work.…”
Section: Introductionmentioning
confidence: 99%