Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Miroslava Kassayová"'
Autor:
Dmytro, Shapko, Petr, Dohnal, Miroslava, Kassayová, Ábel, Kálosi, Serhiy, Rednyk, Štěpán, Roučka, Radek, Plašil, Lucie D, Augustovičová, Rainer, Johnsen, Vladimír, Špirko, Juraj, Glosík
Publikováno v:
The Journal of chemical physics. 152(2)
Recombination of N
Autor:
Serhiy Rednyk, Radek Plašil, Dmytro Shapko, Miroslava Kassayová, Ábel Kálosi, Štěpán Roučka, M. Hejduk, Petr Dohnal, Juraj Glosík
We present studies on the thermalisation of H3+ ions in a cold He/Ar/H2 plasma at temperatures 30–70 K. We show that we are able to generate a rotationally thermalised H3+ ensemble with a population of rotational and nuclear spin states correspondi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::19b03d1e9892dd1f9161e07998e16cd7
https://doi.org/10.1039/c8fd00214b
https://doi.org/10.1039/c8fd00214b
Autor:
Petr, Dohnal, Dmytro, Shapko, Ábel, Kálosi, Miroslava, Kassayová, Štěpán, Roučka, Serhiy, Rednyk, Radek, Plašil, Michal, Hejduk, Juraj, Glosík
Publikováno v:
Faraday discussions. 217
We present studies on the thermalisation of H3+ ions in a cold He/Ar/H2 plasma at temperatures 30-70 K. We show that we are able to generate a rotationally thermalised H3+ ensemble with a population of rotational and nuclear spin states corresponding
Autor:
Štěpán Roučka, Dmytro Shapko, Miroslava Kassayová, Radek Plašil, Liliia Uvarova, Petr Dohnal, Juraj Glosík
Publikováno v:
Journal of Molecular Spectroscopy. 378:111450
A stationary afterglow apparatus with Cavity Ring-Down spectrometer was combined with electron number density measurement system to study the third-body assisted recombination of H 3 + ions with electrons in neon gas at the temperature of 110 K. The
Autor:
Dmytro Shapko, Miroslava Kassayová, Rainer Johnsen, Radek Plašil, Vladimír Špirko, Ábel Kálosi, Lucie D. Augustovičová, Štěpán Roučka, Juraj Glosík, Serhiy Rednyk, Petr Dohnal
Publikováno v:
The Journal of Chemical Physics. 152:024301
Recombination of N2H+ ions with electrons was studied using a stationary afterglow with a cavity ring-down spectrometer. We probed in situ the time evolutions of number densities of different rotational and vibrational states of recombining N2H+ ions