The photodissociation dynamics of nitrogen dioxide have been probed above the second dissociation limit at photolysis wavelengths close to 226 nm. The O(3PJ)+NO(2) product channel has been examined using direct current slice velocity map imaging of the O(3PJ) and NO(2) fragments. Mass-resolved resonantly enhanced multiphoton ionization spectroscopy and velocity map imaging have been used to probe directly the rovibrational population distributions of the NO fragments. We also examine possible interference from the dissociation of N2O4 by investigating the effect of the sample temperature on the O(3PJ) fragment energy distributions. The O(3PJ)+NO(2) dissociation channel has been found to favor the production of vibrationally cold, highly rot...
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 photodissociation dynamics of nitrogen dioxide have been probed above the second dissociation li...
Contains fulltext : 35566.pdf (publisher's version ) (Closed access)A study of the...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
We present velocity map images of the NO, O(P-3(J)) and O(S-1(0)) photofragments from NO2 excited in...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
A study of the photodissociation dynamics of NO2 in the 200–205 nm region using resonance enhanced ...
Velocity-map ion imaging has been applied to the photodissociation of NO(2) via the first absorption...
[[abstract]]The distributions of vibrational, rotational, spin-orbit and lambda-doublet states of na...
Velocity-map ion imaging (VMI) has been used to study the angular distribution of the NO fragment ge...
Time resolved Fourier transform infrared emission has been used to study the photolysis of NO2 and i...
We present a new photo-fragment imaging spectrometer, which employs a movable repeller in a single f...
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...
The photodissociation dynamics of nitrogen dioxide have been probed above the second dissociation li...
Contains fulltext : 35566.pdf (publisher's version ) (Closed access)A study of the...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
We present velocity map images of the NO, O(P-3(J)) and O(S-1(0)) photofragments from NO2 excited in...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
A study of the photodissociation dynamics of NO2 in the 200–205 nm region using resonance enhanced ...
Velocity-map ion imaging has been applied to the photodissociation of NO(2) via the first absorption...
[[abstract]]The distributions of vibrational, rotational, spin-orbit and lambda-doublet states of na...
Velocity-map ion imaging (VMI) has been used to study the angular distribution of the NO fragment ge...
Time resolved Fourier transform infrared emission has been used to study the photolysis of NO2 and i...
We present a new photo-fragment imaging spectrometer, which employs a movable repeller in a single f...
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...