Post form of “boundary corrected continuum intermediate state (BCIS)” approximation has been employed to study charge transfer cross-sections in collision of Cq+, Nq+ and Oq+ (q=1–5) with ground state atomic hydrogen in the energy range of 50–200 keV/amu. In this formalism we have adopted model potential for the interaction of the active electron with the projectile ion. Calculated results for total charge transfer cross-sections have significant improvement over other existing theoretical results in their comparison to the available experimental findings except for singly charge ions. Sub-shell distribution for total charge transfer cross-section has also been reported in graphical form. Predictions suggested by Olson in connection with ...
Absolute total cross-sections have been measured for electron-capture reactions involving ground-sta...
Recent progress on the application of a quantal, molecular-orbital, close-coupling approach to the c...
A classical phase-space model of the hydrogen molecule which includes both electrons and nuclear cen...
Cross section measurements and calculations are presented for electron capture by multiply charged i...
Using a semiclassical close-coupling approach, we have calculated electron capture, excitation and i...
In this thesis charge transfer is studied in collisions of highly charged ions (Aq+) with neutral pa...
In the impact velocity range of 0.2-0.6 a.u. (1-9 keV/amu) we have measured absolute line emission c...
We have used photon emission spectroscopy to determine absolute, state-selective cross sections for ...
The first state selective electron capture cross section measurements at eV energies are reported fo...
We have been mostly concerned with the electron transfer and related processes that occur in heavy b...
The total-electron-capture cross section for collisions of C4+ with ground-state hydrogen (deuterium...
We measured state-selective absolute electron capture cross sections for collisions of He-like C4+, ...
The boundary-corrected continuum intermediate state (BCIS) method is used to compute total cross sec...
The technique of double translational energy spectroscopy has been employed to study for the first t...
Absolute total cross-sections have been measured for electron-capture reactions involving ground-sta...
Recent progress on the application of a quantal, molecular-orbital, close-coupling approach to the c...
A classical phase-space model of the hydrogen molecule which includes both electrons and nuclear cen...
Cross section measurements and calculations are presented for electron capture by multiply charged i...
Using a semiclassical close-coupling approach, we have calculated electron capture, excitation and i...
In this thesis charge transfer is studied in collisions of highly charged ions (Aq+) with neutral pa...
In the impact velocity range of 0.2-0.6 a.u. (1-9 keV/amu) we have measured absolute line emission c...
We have used photon emission spectroscopy to determine absolute, state-selective cross sections for ...
The first state selective electron capture cross section measurements at eV energies are reported fo...
We have been mostly concerned with the electron transfer and related processes that occur in heavy b...
The total-electron-capture cross section for collisions of C4+ with ground-state hydrogen (deuterium...
We measured state-selective absolute electron capture cross sections for collisions of He-like C4+, ...
The boundary-corrected continuum intermediate state (BCIS) method is used to compute total cross sec...
The technique of double translational energy spectroscopy has been employed to study for the first t...
Absolute total cross-sections have been measured for electron-capture reactions involving ground-sta...
Recent progress on the application of a quantal, molecular-orbital, close-coupling approach to the c...
A classical phase-space model of the hydrogen molecule which includes both electrons and nuclear cen...