Near-threshold production of antihydrogen ion () in positronium–antihydrogen collisions is predicted by a rigorous four-body scattering calculation. The convergence of the cross sections for the rearrangement and for all competing reactions (elastic scattering, de/excitation and de/polarization of positronium) is carefully examined against partial waves. The multi-channel scattering solutions are composed of functions that diagonalize the four-body Hamiltonian, and scattering functions that satisfy the correct asymptotic boundary conditions. The production rates of show large discrepancies compared to more approximate calculations
The cross section for antihydrogen formation in collision of an antiproton with ground-state positro...
The cross section for positronium formation by positron collisions in hydrogen is calculated from eq...
We use the equivalence of positron scattering on atomic hydrogen, and positronium-proton scattering,...
© 2016 American Physical Society. The two-center convergent close-coupling method is used to calcula...
We have developed a coupled-rearrangement-channel method allowing the rigorous non-adiabatic treatme...
We have developed a coupled-rearrangement-channel method allowing the rigorous non-adiabatic treatme...
Using the convergent close-coupling theory we study the threshold behavior of cross sections for pos...
The current state of the theoretical methods that are used in calculations of cross sections for the...
International audienceThe charge exchange reaction $\bar {\mathrm {p}} + \text {Ps} \rightarrow \mat...
International audienceThe charge exchange reaction $\bar {\mathrm {p}} + \text {Ps} \rightarrow \mat...
We study the influence of narrow resonances on antihydrogen formation cross sections via the three-b...
method. Statistically accurate cross sections for protonium and antihydrogen formation have been obt...
The interaction of antiprotons with low-energy positronium atoms is a fundamental three-body problem...
Using the convergent close-coupling theory we study the threshold behavior of cross sections for pos...
The cross section for antihydrogen formation in the n = 1, 2 and 3 levels from antiproton-positroniu...
The cross section for antihydrogen formation in collision of an antiproton with ground-state positro...
The cross section for positronium formation by positron collisions in hydrogen is calculated from eq...
We use the equivalence of positron scattering on atomic hydrogen, and positronium-proton scattering,...
© 2016 American Physical Society. The two-center convergent close-coupling method is used to calcula...
We have developed a coupled-rearrangement-channel method allowing the rigorous non-adiabatic treatme...
We have developed a coupled-rearrangement-channel method allowing the rigorous non-adiabatic treatme...
Using the convergent close-coupling theory we study the threshold behavior of cross sections for pos...
The current state of the theoretical methods that are used in calculations of cross sections for the...
International audienceThe charge exchange reaction $\bar {\mathrm {p}} + \text {Ps} \rightarrow \mat...
International audienceThe charge exchange reaction $\bar {\mathrm {p}} + \text {Ps} \rightarrow \mat...
We study the influence of narrow resonances on antihydrogen formation cross sections via the three-b...
method. Statistically accurate cross sections for protonium and antihydrogen formation have been obt...
The interaction of antiprotons with low-energy positronium atoms is a fundamental three-body problem...
Using the convergent close-coupling theory we study the threshold behavior of cross sections for pos...
The cross section for antihydrogen formation in the n = 1, 2 and 3 levels from antiproton-positroniu...
The cross section for antihydrogen formation in collision of an antiproton with ground-state positro...
The cross section for positronium formation by positron collisions in hydrogen is calculated from eq...
We use the equivalence of positron scattering on atomic hydrogen, and positronium-proton scattering,...