We present a new photo-fragment imaging spectrometer, which employs a movable repeller in a single field imaging geometry. This innovation offers two principal advantages. First, the optimal fields for velocity mapping can easily be achieved even using a large molecular beam diameter (5 mm); the velocity resolution (better than 1%) is sufficient to easily resolve photo-electron recoil in (2 + 1) resonant enhanced multiphoton ionization of N2 photoproducts from N2O or from molecular beam cooled N2. Second, rapid changes between spatial imaging, velocity mapping, and slice imaging are straightforward. We demonstrate this technique's utility in a re-investigation of the photodissociation of N2O. Using a hot nozzle, we observe slice images that...
Velocity-map ion imaging has been applied to the photodissociation of NO(2) via the first absorption...
Vacuum ultraviolet photodissociation dynamics of nitrous oxide was investigated using the time-slice...
A study of the photodissociation dynamics of NO2 in the 200–205 nm region using resonance enhanced ...
We present a new photo-fragment imaging spectrometer, which employs a movable repeller in a single f...
The photodissociation dynamics of nitrogen dioxide have been probed above the second dissociation li...
The photodissociation dynamics of nitrogen dioxide have been probed above the second dissociation li...
The photoionizationdynamics of rotationally hot molecular nitrogen are studied employing resonance e...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
The energy partitioning in the UV photodissociation of N2O is investigated by means of quantum mecha...
The energy partitioning in the UV photodissociation of N2O is investigated by means of quantum mecha...
The energy partitioning in the UV photodissociation of N2O is investigated by means of quantum mecha...
The energy partitioning in the UV photodissociation of N2O is investigated by means of quantum mecha...
We report the study of photodissociation dynamics of nitrous oxide in the vacuum ultraviolet region,...
We study the photodissociation dynamics of nitrous oxide using the time-sliced ion velocity imaging ...
Velocity-map ion imaging has been applied to the photodissociation of NO(2) via the first absorption...
Vacuum ultraviolet photodissociation dynamics of nitrous oxide was investigated using the time-slice...
A study of the photodissociation dynamics of NO2 in the 200–205 nm region using resonance enhanced ...
We present a new photo-fragment imaging spectrometer, which employs a movable repeller in a single f...
The photodissociation dynamics of nitrogen dioxide have been probed above the second dissociation li...
The photodissociation dynamics of nitrogen dioxide have been probed above the second dissociation li...
The photoionizationdynamics of rotationally hot molecular nitrogen are studied employing resonance e...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
The energy partitioning in the UV photodissociation of N2O is investigated by means of quantum mecha...
The energy partitioning in the UV photodissociation of N2O is investigated by means of quantum mecha...
The energy partitioning in the UV photodissociation of N2O is investigated by means of quantum mecha...
The energy partitioning in the UV photodissociation of N2O is investigated by means of quantum mecha...
We report the study of photodissociation dynamics of nitrous oxide in the vacuum ultraviolet region,...
We study the photodissociation dynamics of nitrous oxide using the time-sliced ion velocity imaging ...
Velocity-map ion imaging has been applied to the photodissociation of NO(2) via the first absorption...
Vacuum ultraviolet photodissociation dynamics of nitrous oxide was investigated using the time-slice...
A study of the photodissociation dynamics of NO2 in the 200–205 nm region using resonance enhanced ...