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Cited by 11 publications
(12 citation statements)
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“…Through the nozzle flows working gas (argon) Note, that the working gas flowing from the nozzle stabilises the discharge. The detail description and discussion of the several variants of the nozzle are also presented in [5,6,7]. The electrode is connected through the matching unit to the rf generator Cesar -1310 by Dressler driven at frequency of 13.56 MHz and at the input power 70 ÷ 300 W.…”
Section: Methodsmentioning
confidence: 99%
“…Through the nozzle flows working gas (argon) Note, that the working gas flowing from the nozzle stabilises the discharge. The detail description and discussion of the several variants of the nozzle are also presented in [5,6,7]. The electrode is connected through the matching unit to the rf generator Cesar -1310 by Dressler driven at frequency of 13.56 MHz and at the input power 70 ÷ 300 W.…”
Section: Methodsmentioning
confidence: 99%
“…This chemical species has often been applied as a 'thermometer tool' in high pressure systems [7,37,[43][44][45][46][47] (the relaxation of rotational states is much faster than the electronic transitions). The Boltzmann plot technique is for OH quite straightforward, as continuum background is rather small and no spectral calibration of the optical system is needed as lines are close in wavelengths.…”
Section: Rotational Temperature Estimated From Oh(a−x) Bandmentioning
confidence: 99%
“…The molecular emission bands of OH transitions were used to determine the rotational temperatures as the OH molecular bands were intense and easily observed in all experimental conditions. This chemical species has often been applied as a 'thermometer tool' in high pressure systems [7,37,[43][44][45][46][47] (the relaxation of rotational states is much faster than the electronic transitions). The Boltzmann plot technique is for OH quite straightforward, as continuum background is rather small and no spectral calibration of the optical system is needed as lines are close in wavelengths.…”
Section: Rotational Temperature Estimated From Oh(a−x) Bandmentioning
confidence: 99%