We have investigated the electron impact single ionization of the hydrogen molecule, with fully determined kinematics. The experimental and theoretical results are compared with He ionization under the same conditions. The results indicate that the ejected electron angular distribution for H₂ is modified due to Young-type interference between ionization amplitudes for scattering from the two centers in the hydrogen molecule. The observable result is a suppression of the backward scattering (recoil) peak compared with the binary peak.D. S. Milne-Brownlie, M. Foster, Junfang Gao, B. Lohmann, and D. H. Madiso
Theoretical and experimental fully differential cross sections are presented for electron-impact ion...
We have calculated Triply differential cross sections (TDCS) and doubly differential cross sections ...
There has been impressive progress in the area of theoretical treatments of electron impact ionizati...
We have investigated the electron impact single ionization of the hydrogen molecule, with fully dete...
We have investigated the electron impact single ionization of the hydrogen molecule, with fully dete...
We have studied electron impact ionization of H2 and N2 molecules at intermediate energies to look f...
Relative (e,2e) triply differential cross sections (TDCS) are measured for the ionization of the hel...
Relative (e,2e) triply differential cross sections (TDCS) are measured for the ionization of the hel...
A nonperturbative close-coupling technique is used to calculate differential cross sections for the ...
A number of previous studies have suggested the possibility of two-center interference effects in th...
We have measured fully differential cross sections for ionization of H2 by 75-keV proton impact. The...
Doubly differential cross sections (DDCSs) for single ionization of molecular hydrogen by 75-keV pro...
A number of previous studies have suggested the possibility of two-center interference effects in th...
We report a combined experimental and theoretical study on the electron-impact ionization dynamics o...
We report a combined experimental and theoretical study on the electron-impact ionization dynamics o...
Theoretical and experimental fully differential cross sections are presented for electron-impact ion...
We have calculated Triply differential cross sections (TDCS) and doubly differential cross sections ...
There has been impressive progress in the area of theoretical treatments of electron impact ionizati...
We have investigated the electron impact single ionization of the hydrogen molecule, with fully dete...
We have investigated the electron impact single ionization of the hydrogen molecule, with fully dete...
We have studied electron impact ionization of H2 and N2 molecules at intermediate energies to look f...
Relative (e,2e) triply differential cross sections (TDCS) are measured for the ionization of the hel...
Relative (e,2e) triply differential cross sections (TDCS) are measured for the ionization of the hel...
A nonperturbative close-coupling technique is used to calculate differential cross sections for the ...
A number of previous studies have suggested the possibility of two-center interference effects in th...
We have measured fully differential cross sections for ionization of H2 by 75-keV proton impact. The...
Doubly differential cross sections (DDCSs) for single ionization of molecular hydrogen by 75-keV pro...
A number of previous studies have suggested the possibility of two-center interference effects in th...
We report a combined experimental and theoretical study on the electron-impact ionization dynamics o...
We report a combined experimental and theoretical study on the electron-impact ionization dynamics o...
Theoretical and experimental fully differential cross sections are presented for electron-impact ion...
We have calculated Triply differential cross sections (TDCS) and doubly differential cross sections ...
There has been impressive progress in the area of theoretical treatments of electron impact ionizati...