Proton-sodium charge transfer is studied, using 9- and 19-state adiabatic molecular bases and the impact parameter method, in the energy range 0.5-5 keV. The dynamical radial and rotational coupling terms and a common translation factor (CTF) are included. The effect of the choice of the coordinate centre on the total charge exchange cross sections to H( n = 2) is clearly demonstrated when no CTF is included. The alignment dependence of the capture to H(n =2) is obtained and is satisfactorily compared with the atomic expansion calculations. State-to-state charge exchange differential cross sections are calculated; the alignment and orientation effects are expected to be observable at the collision energy 0.5 keV where they are spread out at...
State selective single charge exchange n-level cross sections are calculated for collisions of Xe18+...
Using a two-state impact parameter approximation, a calculation has been carried out to obtain symme...
Collision processes between the hydrogen ion H+ and an atom adsorbed on the Al(100) surface at grazi...
Proton-sodium charge transfer is studied, using 9- and 19-state adiabatic molecular bases and the im...
We present a systematic experimental and theoretical study of angular differential cross sections of...
We present a systematic experimental and theoretical study of angular differential cross sections of...
This paper reports experimental and theoretical results for the influence of target excitation and o...
This paper reports experimental and theoretical results for the influence of target excitation and o...
We reexamined charge-transfer cross sections for protons colliding with Na(3s) atoms for collision e...
We report on a theoretical and experimental study of state-selective differential single-electron tr...
The authors investigate sodium-proton charge transfer using 14-state adiabatic, molecular-basis clas...
Single electron transfer and ionization in collisions of N5+ and Ne8+ with ground state Na(3s) and l...
The charge-transfer processes occurring in collisions of Li + Na+ and Na + Li+ have been studied the...
Abstract We present a theoretical study of the ionization of nitrogen atom by a singly charged sodiu...
The Projected Valence Bond potential energies of NaHe system calculated by Courbin-Gaussorgues and S...
State selective single charge exchange n-level cross sections are calculated for collisions of Xe18+...
Using a two-state impact parameter approximation, a calculation has been carried out to obtain symme...
Collision processes between the hydrogen ion H+ and an atom adsorbed on the Al(100) surface at grazi...
Proton-sodium charge transfer is studied, using 9- and 19-state adiabatic molecular bases and the im...
We present a systematic experimental and theoretical study of angular differential cross sections of...
We present a systematic experimental and theoretical study of angular differential cross sections of...
This paper reports experimental and theoretical results for the influence of target excitation and o...
This paper reports experimental and theoretical results for the influence of target excitation and o...
We reexamined charge-transfer cross sections for protons colliding with Na(3s) atoms for collision e...
We report on a theoretical and experimental study of state-selective differential single-electron tr...
The authors investigate sodium-proton charge transfer using 14-state adiabatic, molecular-basis clas...
Single electron transfer and ionization in collisions of N5+ and Ne8+ with ground state Na(3s) and l...
The charge-transfer processes occurring in collisions of Li + Na+ and Na + Li+ have been studied the...
Abstract We present a theoretical study of the ionization of nitrogen atom by a singly charged sodiu...
The Projected Valence Bond potential energies of NaHe system calculated by Courbin-Gaussorgues and S...
State selective single charge exchange n-level cross sections are calculated for collisions of Xe18+...
Using a two-state impact parameter approximation, a calculation has been carried out to obtain symme...
Collision processes between the hydrogen ion H+ and an atom adsorbed on the Al(100) surface at grazi...