In this article, we describe an apparatus in our laboratory for investigating elementary chemical reactions using the high resolution time-of-flight Rydberg tagging method. In this apparatus, we have adopted a rotating source design so that collision energy can be changed for crossed beam studies of chemical reactions. Preliminary results on the HI photodissociation and the F atom reaction with H-2 are reported here. These results suggest that the experimental apparatus is potentially a powerful tool for investigating state-to-state dynamics of elementary chemical reactions. (c) 2005 American Institute of Physics
In this report, the dynamics of the F+SiH4 reaction has been studied using the universal crossed mol...
Crossed beams scattering study was carried out on the F+HD -> DF+H reaction using high-resolution H-...
The final report describes studies of unimolecular reactions of transient species and radicals relev...
Probing state-to-state reaction dynamics using H-atom Rydberg tagging time-of-flight spectroscopyIn ...
This review has introduced some experimental techniques of crossed molecular beam apparatus in chemi...
This review has introduced some experimental techniques of crossed molecular beam apparatus in chemi...
A state-of-the-art crossed molecular beam experiment to study the dynamics of bimolecular reactions ...
A new crossed molecular beam apparatus has been constructed for investigating polyatomic chemical re...
A new apparatus is described in which a beam of molecular ions in a selected vibration-rotation stat...
The dynamics of F+HD -> HF+D reaction has been studied at ten collision energies ranging from 5.43 k...
The crossed beams scattering dynamics of the F+HD -> DF+H reaction have been studied at collision en...
The H+H-2 reaction is the simplest chemical reaction system and has long been the prototype model in...
In this review, a few examples of state-to-state dynamics studies of both unimolecular and bimolecul...
A state-of-the-art crossed molecular beam experiment to study the dynamics of bimolecular reactions ...
The power of the crossed molecular beams method in the investigation of the dynamics of chemical rea...
In this report, the dynamics of the F+SiH4 reaction has been studied using the universal crossed mol...
Crossed beams scattering study was carried out on the F+HD -> DF+H reaction using high-resolution H-...
The final report describes studies of unimolecular reactions of transient species and radicals relev...
Probing state-to-state reaction dynamics using H-atom Rydberg tagging time-of-flight spectroscopyIn ...
This review has introduced some experimental techniques of crossed molecular beam apparatus in chemi...
This review has introduced some experimental techniques of crossed molecular beam apparatus in chemi...
A state-of-the-art crossed molecular beam experiment to study the dynamics of bimolecular reactions ...
A new crossed molecular beam apparatus has been constructed for investigating polyatomic chemical re...
A new apparatus is described in which a beam of molecular ions in a selected vibration-rotation stat...
The dynamics of F+HD -> HF+D reaction has been studied at ten collision energies ranging from 5.43 k...
The crossed beams scattering dynamics of the F+HD -> DF+H reaction have been studied at collision en...
The H+H-2 reaction is the simplest chemical reaction system and has long been the prototype model in...
In this review, a few examples of state-to-state dynamics studies of both unimolecular and bimolecul...
A state-of-the-art crossed molecular beam experiment to study the dynamics of bimolecular reactions ...
The power of the crossed molecular beams method in the investigation of the dynamics of chemical rea...
In this report, the dynamics of the F+SiH4 reaction has been studied using the universal crossed mol...
Crossed beams scattering study was carried out on the F+HD -> DF+H reaction using high-resolution H-...
The final report describes studies of unimolecular reactions of transient species and radicals relev...