State specificity in association reaction of H3+ with H2

S Serhiy Rednyk (Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,) P Petr Dohnal (Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,) O Octavio Emmanuel Hernández Alvarez (Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,) Štěpán Roučka (Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,) R Radek Plašil (Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,) J Juraj Glosík (Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,)

Abstract

The three-body association reaction of H3+ with H2 assisted by helium and H2 was studied using a 22-pole radiofrequency ion trap instrument in the temperature range of 15–35 K. The role of the rotational excitation of H2 was investigated in measurements with normal and para-enriched H2. From the dependence of the measured three-body reaction rate coefficients on the character of the third body and on the H2 nuclear spin state, we found that rotationally excited (normal) H2 is less efficient in stabilizing the (H5+)* intermediate complex than both He and ground-state (para) H2. The lifetime of the (H5+)* complex was found to be ∼3 times higher in para-enriched H2 than in normal H2.

Article Details

Volume / Issue Vol. 163, Issue 13
Published October 07, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (6)

S

Serhiy Rednyk

Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,

P

Petr Dohnal

Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,

O

Octavio Emmanuel Hernández Alvarez

Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,

Štěpán Roučka

Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,

R

Radek Plašil

Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,

J

Juraj Glosík

Charles University, Faculty of Mathematics and Physics, Department of Surface and Plasma Science , Prague,