State-to-state quantum dynamics calculations for the H + LiH (v = 0-1, j = 0) -> H-2 + Li reactions are performed based on an ab initio ground electronic state potential energy surface (PES). Total and product state-resolved integral and differential cross sections and rate constants are calculated. The present total integral cross sections and rate constants for the H + LiH (v = 0, = 0) reaction are found to be in agreement with previous literature results. Product state-resolved integral cross sections and rate constants reveal that the H-2 products are preferred to be formed in their rovibrational excited states. The differential cross sections show that the intensity of forward scattering for the H-2 products in their rovibrational exci...
A thorough time-independent quantum scattering study is performed on a benchmark potential energy su...
A thorough time-independent quantum scattering study is performed on a benchmark potential energy su...
The channel specific and initial state-selected reaction cross section and temperature-dependent rat...
State-to-state quantum dynamics calculations for the H + LiH (<i>v</i> = 0–1, <i>j</i> = 0) → H<sub>...
State specific dynamics of the H + LiH+ reaction is theoretically investigated on its electronic gro...
State specific dynamics of the H + LiH+ reaction is theoretically investigated on its electronic gro...
The state-to-state reaction dynamics of the title reaction is investigated on the ground electronic ...
The state-to-state quantum dynamics calculation for the reaction $\text{O}^{+}+\text{H}_{2} \to \tex...
The time-dependent approach to reactive scattering is applied to the study of the collinear collisio...
Quasi-classical trajectory (QCT) method is carried out to calculate the dynamics of the H + LiH (v ...
The authors report a detailed quantum mechanical study of the state-to-state dynamics of the O +OH(n...
In the present work, the long-range interaction potential part of potential energy surface (PES) of ...
The paper presents a theoretical study of the dynamics of the H + HCl system on the potential energy...
We report the initial-state-selected and energy-resolved total reaction probabilities for the H+HLi ...
In the present work, the long-range interaction potential part of potential energy surface (PES) of ...
A thorough time-independent quantum scattering study is performed on a benchmark potential energy su...
A thorough time-independent quantum scattering study is performed on a benchmark potential energy su...
The channel specific and initial state-selected reaction cross section and temperature-dependent rat...
State-to-state quantum dynamics calculations for the H + LiH (<i>v</i> = 0–1, <i>j</i> = 0) → H<sub>...
State specific dynamics of the H + LiH+ reaction is theoretically investigated on its electronic gro...
State specific dynamics of the H + LiH+ reaction is theoretically investigated on its electronic gro...
The state-to-state reaction dynamics of the title reaction is investigated on the ground electronic ...
The state-to-state quantum dynamics calculation for the reaction $\text{O}^{+}+\text{H}_{2} \to \tex...
The time-dependent approach to reactive scattering is applied to the study of the collinear collisio...
Quasi-classical trajectory (QCT) method is carried out to calculate the dynamics of the H + LiH (v ...
The authors report a detailed quantum mechanical study of the state-to-state dynamics of the O +OH(n...
In the present work, the long-range interaction potential part of potential energy surface (PES) of ...
The paper presents a theoretical study of the dynamics of the H + HCl system on the potential energy...
We report the initial-state-selected and energy-resolved total reaction probabilities for the H+HLi ...
In the present work, the long-range interaction potential part of potential energy surface (PES) of ...
A thorough time-independent quantum scattering study is performed on a benchmark potential energy su...
A thorough time-independent quantum scattering study is performed on a benchmark potential energy su...
The channel specific and initial state-selected reaction cross section and temperature-dependent rat...