We propose a method to steer the outcome of reactive atom-diatom scattering, using rotational wavepackets excited by strong non-resonant laser pulses. Full close-coupled quantum mechanical scattering calculations of the D+H2 and F+H2 reactions are presented, where the H2 molecule exists as a coherent superposition of rotational states. The nuclear spin selective control over the molecular bond axis alignment afforded by the creation of rotational wavepackets is applied to reactive scattering systems, enabling a nuclear spin selective influence to be exerted over the reactive dynamics. The extension of the conventional eigenstate-to-eigenstate scattering problem to the case in which the initial state is composed of a coherent superp...
Expanding on an earlier Communication [M. H. Alexander, H.-J. Werner, and D. E. Manolopoulos, J. Che...
In this dissertation we study the role of the F spin-orbit excited state (F*) in the F+H2 and F+HD r...
We present the results of a joint experimental and theoretical investigation of the reaction dynamic...
In this talk, we describe the most recent progresses in the study of the benchmark F+H2 reaction usi...
Reaction resonance is a frontier topic in chemical dynamics research, and it is aiso essential to th...
Reaction resonance is a frontier topic in chemical dynamics research, and it is also essential to th...
We present quantum mechanical close-coupling calculations of collisions between two hydrogen molecul...
Accurate three‐dimensional reactive and nonreactive quantum mechanical cross sections for the H+H_2 ...
The results of an accurate quantum mechanical treatment of the planar H+H_2 exchange reaction on a r...
Collisions between deuterium atoms and hydrogen molecules were studied in a modulated crossed beam e...
The results of an accurate quantum mechanical treatment of the planar H+H_2 exchange reaction on a r...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
Expanding on an earlier Communication [M. H. Alexander, H.-J. Werner, and D. E. Manolopoulos, J. Che...
In this dissertation we study the role of the F spin-orbit excited state (F*) in the F+H2 and F+HD r...
We present the results of a joint experimental and theoretical investigation of the reaction dynamic...
In this talk, we describe the most recent progresses in the study of the benchmark F+H2 reaction usi...
Reaction resonance is a frontier topic in chemical dynamics research, and it is aiso essential to th...
Reaction resonance is a frontier topic in chemical dynamics research, and it is also essential to th...
We present quantum mechanical close-coupling calculations of collisions between two hydrogen molecul...
Accurate three‐dimensional reactive and nonreactive quantum mechanical cross sections for the H+H_2 ...
The results of an accurate quantum mechanical treatment of the planar H+H_2 exchange reaction on a r...
Collisions between deuterium atoms and hydrogen molecules were studied in a modulated crossed beam e...
The results of an accurate quantum mechanical treatment of the planar H+H_2 exchange reaction on a r...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
A method is presented for accurately solving the Schrödinger equation for the reactive collision of ...
Expanding on an earlier Communication [M. H. Alexander, H.-J. Werner, and D. E. Manolopoulos, J. Che...
In this dissertation we study the role of the F spin-orbit excited state (F*) in the F+H2 and F+HD r...
We present the results of a joint experimental and theoretical investigation of the reaction dynamic...