In this work, a numerical study on molecular beam scattering of a nitrogen molecule from a graphite surface has been performed. The study was carried out using the molecular dynamics method. The focus of the study is mainly placed on investigating the scattering dynamics in the case of strong rotational non-equilibrium, defined here as a state in which rotational temperature of a molecule strongly deviates from the room temperature. To that end, the incident beam velocity and initial rotational energy of nitrogen molecules have been varied greatly in order to capture a broad range of possible initial states. The obtained results provide valuable insight into the nature of energy transfer occurring during collisions and help to quantify the ...
The effect of mass on gas/organic-surface energy transfer is explored via investigation of the scatt...
The scattering of a hyperthermal Xe from a graphite (0001) surface has been studied using a molecul...
The use of molecular beams to study chemical dynamics at surfaces is outlined. The techniques is bri...
A new analytical potential energy surface is proposed to investigate, by semiclassical molecular dyn...
Gas flow in nanospaces is greatly affected by the scattering behavior of gas molecules on solid surf...
We present classical trajectory calculations of the rotational vibrational scattering of a nonrigid ...
A chemical dynamics simulation was performed to study low energy collisions between N<sub>2</sub> an...
The dynamics of H2O, CO2, and glycine (GLY) colliding with highly oriented pyrolytic graphite (HOPG)...
We have conducted investigations of the energy transfer dynamics of atomic oxygen and argon scatteri...
This thesis contains the results of molecular dynamics simulations of molecule-surface interactions,...
This thesis contains the results of molecular dynamics simulations of molecule-surface interactions,...
Molecular beam scattering experiments and molecular dynamics simulations have been combined to devel...
The dynamics of inelastic and reactive collisions in atomic beam-surface scattering are presented. T...
We performed classical molecular dynamics simulations to model the scattering process of nitric oxid...
A theoretical model is presented for the scattering of molecules from surfaces under conditions in w...
The effect of mass on gas/organic-surface energy transfer is explored via investigation of the scatt...
The scattering of a hyperthermal Xe from a graphite (0001) surface has been studied using a molecul...
The use of molecular beams to study chemical dynamics at surfaces is outlined. The techniques is bri...
A new analytical potential energy surface is proposed to investigate, by semiclassical molecular dyn...
Gas flow in nanospaces is greatly affected by the scattering behavior of gas molecules on solid surf...
We present classical trajectory calculations of the rotational vibrational scattering of a nonrigid ...
A chemical dynamics simulation was performed to study low energy collisions between N<sub>2</sub> an...
The dynamics of H2O, CO2, and glycine (GLY) colliding with highly oriented pyrolytic graphite (HOPG)...
We have conducted investigations of the energy transfer dynamics of atomic oxygen and argon scatteri...
This thesis contains the results of molecular dynamics simulations of molecule-surface interactions,...
This thesis contains the results of molecular dynamics simulations of molecule-surface interactions,...
Molecular beam scattering experiments and molecular dynamics simulations have been combined to devel...
The dynamics of inelastic and reactive collisions in atomic beam-surface scattering are presented. T...
We performed classical molecular dynamics simulations to model the scattering process of nitric oxid...
A theoretical model is presented for the scattering of molecules from surfaces under conditions in w...
The effect of mass on gas/organic-surface energy transfer is explored via investigation of the scatt...
The scattering of a hyperthermal Xe from a graphite (0001) surface has been studied using a molecul...
The use of molecular beams to study chemical dynamics at surfaces is outlined. The techniques is bri...