© Published under licence by IOP Publishing Ltd. A fully quantum-mechanical convergent close-coupling approach to proton collisions with atomic hydrogen has been developed. Cross sections for target ionisation and electron capture by the projectile have been calculated in the energy range from 20 keV to 1 MeV. Calculated electron capture cross sections are in good agreement with the experiment, however for ionisation discrepancies between theory and experiment at intermediate energies still remain
© Cambridge University Press 2013.Introduction The accurate solution of the Schrödinger equation (SE...
Coupled state calculations of proton-hydrogen atom scattering have been performed, and the results a...
The convergent close-coupling method is applied to the calculation of fully differential cross secti...
Details of the recently developed quantum-mechanical two-center convergent close-coupling approach (...
© 2017 IOP Publishing Ltd. The atomic hydrogen target has played a pivotal role in the development o...
The two-centre wave-packet convergent close-coupling approach to ion–atom collisions is extended to ...
The atomic hydrogen target has played a pivotal role in the development of quantum collision theory....
A fully quantal approach to proton collisions with hydrogen based on the atomic-orbital close-coupli...
Proton stopping power in hydrogen is calculated using a hybrid method. A two-centre convergent close...
Application of the convergent close-coupling (CCC) method to electron-impact ionisation of the groun...
© 2018 IOP Publishing Ltd. Wavepacket continuum-discretisation approach is used to calculate excitat...
Heavy ion collisions with atomic and molecular targets produce many outcomes. The Schrödinger equat...
This thesis presents an extensive computational study of electron-impact scattering and ionisation o...
The convergent close-coupling (CCC) method was developed in order to resolve the long-standing discr...
Kinematically complete fully quantum-mechanical solution of the positron-hydrogen scattering problem...
© Cambridge University Press 2013.Introduction The accurate solution of the Schrödinger equation (SE...
Coupled state calculations of proton-hydrogen atom scattering have been performed, and the results a...
The convergent close-coupling method is applied to the calculation of fully differential cross secti...
Details of the recently developed quantum-mechanical two-center convergent close-coupling approach (...
© 2017 IOP Publishing Ltd. The atomic hydrogen target has played a pivotal role in the development o...
The two-centre wave-packet convergent close-coupling approach to ion–atom collisions is extended to ...
The atomic hydrogen target has played a pivotal role in the development of quantum collision theory....
A fully quantal approach to proton collisions with hydrogen based on the atomic-orbital close-coupli...
Proton stopping power in hydrogen is calculated using a hybrid method. A two-centre convergent close...
Application of the convergent close-coupling (CCC) method to electron-impact ionisation of the groun...
© 2018 IOP Publishing Ltd. Wavepacket continuum-discretisation approach is used to calculate excitat...
Heavy ion collisions with atomic and molecular targets produce many outcomes. The Schrödinger equat...
This thesis presents an extensive computational study of electron-impact scattering and ionisation o...
The convergent close-coupling (CCC) method was developed in order to resolve the long-standing discr...
Kinematically complete fully quantum-mechanical solution of the positron-hydrogen scattering problem...
© Cambridge University Press 2013.Introduction The accurate solution of the Schrödinger equation (SE...
Coupled state calculations of proton-hydrogen atom scattering have been performed, and the results a...
The convergent close-coupling method is applied to the calculation of fully differential cross secti...