Polarized laser photolysis, coupled with resonantly enhanced multiphoton ionization detection of O(1D2) and velocity-map ion imaging, has been used to investigate the photodissociation dynamics of ozone at 193 nm. The use of multiple pump and probe laser polarization geometries and probe transitions has enabled a comprehensive characterization of the angular momentum polarization of the O(1D2) photofragments, in addition to providing high-resolution information about their speed and angular distributions. Images obtained at the probe laser wavelength of around 205 nm indicate dissociation primarily via the Hartley band, involving absorption to, and diabatic dissociation on, the B 1B2(3 1A1) potential energy surface. Rather different O(1D2) ...
Angular momentum polarisation and translational anisotropy have been measured for the J = 17 and 18 ...
The technique of resonance enhanced multiphoton ionization (REMPI) has been used in conjunction with...
In this thesis, resonance enhanced multiphoton ionisation (REMPI) in combination with time-of-flight...
Contains fulltext : 35172.pdf (publisher's version ) (Open Access)Polarized laser ...
Speed distributions, and spatial anisotropy and atomic angular momentum polarization parameters have...
Speed distributions, and spatial anisotropy and atomic angular momentum polarization parameters have...
The speed averaged translational anisotropy and electronic angular momentum polarization of the O(1D...
In the following paper we present translational anisotropy and angular momentum polarization data fo...
The translational anisotropy and rotational angular momentum polarization of a selection of rotation...
The translational anisotropy and the polarization of the electronic angular momentum of the O ((1)D2...
The photodissociation of ozone has been studied at 193 nm using high resolution photofragment transl...
Angular momentum polarisation and translational anisotropy have been measured for the J = 17 and 18 ...
The photodissociation of ozone at 276 nm is investigated using both state resolved ion imaging and h...
The translational anisotropy and angular momentum polarization of the O(2)(a (1)Delta(g),v = 0;J = 1...
Contains fulltext : 60303.pdf (publisher's version ) (Open Access)The 193-nm photo...
Angular momentum polarisation and translational anisotropy have been measured for the J = 17 and 18 ...
The technique of resonance enhanced multiphoton ionization (REMPI) has been used in conjunction with...
In this thesis, resonance enhanced multiphoton ionisation (REMPI) in combination with time-of-flight...
Contains fulltext : 35172.pdf (publisher's version ) (Open Access)Polarized laser ...
Speed distributions, and spatial anisotropy and atomic angular momentum polarization parameters have...
Speed distributions, and spatial anisotropy and atomic angular momentum polarization parameters have...
The speed averaged translational anisotropy and electronic angular momentum polarization of the O(1D...
In the following paper we present translational anisotropy and angular momentum polarization data fo...
The translational anisotropy and rotational angular momentum polarization of a selection of rotation...
The translational anisotropy and the polarization of the electronic angular momentum of the O ((1)D2...
The photodissociation of ozone has been studied at 193 nm using high resolution photofragment transl...
Angular momentum polarisation and translational anisotropy have been measured for the J = 17 and 18 ...
The photodissociation of ozone at 276 nm is investigated using both state resolved ion imaging and h...
The translational anisotropy and angular momentum polarization of the O(2)(a (1)Delta(g),v = 0;J = 1...
Contains fulltext : 60303.pdf (publisher's version ) (Open Access)The 193-nm photo...
Angular momentum polarisation and translational anisotropy have been measured for the J = 17 and 18 ...
The technique of resonance enhanced multiphoton ionization (REMPI) has been used in conjunction with...
In this thesis, resonance enhanced multiphoton ionisation (REMPI) in combination with time-of-flight...