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Автор Hrvoje Skenderovic
Автор Ticijana Ban
Автор Goran Pichler
Дата выпуска 2000-02-21
dc.description We investigated emission spectrum of LiH molecules from an electric discharge in a heat-pipe oven. The optimal conditions for the most intense LiH emission regarding the vapour pressures of helium, hydrogen and lithium were found to be 2.5 Torr, 8.5 Torr and 0.9 mTorr, respectively. The important role of helium gas in increasing the LiH emission intensity is described. The number density of the lithium atoms in the first excited state, Li(2p) and the LiH emission, was measured for different hydrogen pressures and currents through the discharge. We found that one part of the LiH molecules formed in the discharge is created in chemical quenching of excited lithium atoms by H<sub>2</sub> . We performed the theoretical simulations for observed LiH A <sup>1</sup> <sup>+</sup> -X <sup>1</sup> <sup>+</sup> emission band. The rotational temperature and the population distribution of vibrational levels in the LiH A <sup>1</sup> <sup>+</sup> state were determined. We also describe the search for emission from the LiH C <sup>1</sup> <sup>+</sup> electronic state in the spectrum, which at present is unsuccessful.
Формат application.pdf
Издатель Institute of Physics Publishing
Название LiH emission spectrum from the glow discharge in a heat-pipe oven
Тип paper
DOI 10.1088/0022-3727/33/4/313
Electronic ISSN 1361-6463
Print ISSN 0022-3727
Журнал Journal of Physics D: Applied Physics
Том 33
Первая страница 396
Последняя страница 404
Аффилиация Hrvoje Skenderovic; Institute of Physics, PO Box 304, HR-10000 Zagreb, Croatia
Аффилиация Ticijana Ban; Institute of Physics, PO Box 304, HR-10000 Zagreb, Croatia
Аффилиация Goran Pichler; Institute of Physics, PO Box 304, HR-10000 Zagreb, Croatia
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