Spatially-resolved measurements of flame temperature have been demonstrated with diode lasers for the first time. The technique is based on the use of blue diode lasers to perform laser-induced fluorescence on indium atoms seeded to the flame. Temperature measurements have been carried out in laminar flames both by the two-line atomic fluorescence technique, and also by a novel line-shape thermometry method that requires the use of only a single diode laser. The first part of this work involved the development of blue extended cavity diode lasers with favourable tuning properties. Two custom-designed extended cavity diode lasers (ECDL) have been built, emitting at wavelengths of around 410 nm and 451 nm respectively. These devices are capab...
Temperature may be considered the most important combustion parameter owing to its exponential influ...
In this work, Scheimpflug lidar has been combined with the thermometric technique two-line atomic fl...
The aim of this work is the development of a non-intrusive multiplexed diode-laser sensor system to ...
Spatially-resolved measurements of flame temperature have been demonstrated with diode lasers for th...
We report on kilohertz-repetition-rate flame temperature measurements performed using blue diode las...
This paper reports on the first application of diode laser based LIF for pointwise temperature measu...
We report on the development of a novel diode laser thermometry technique permitting temperature mea...
The present thesis is concerned with the development and application of a novel planar laser-induced...
The use of diode lasers for spatially resolved temperature imaging is demonstrated in low pressure p...
Temperature measurements have been performed in a low-pressure flame by the technique of diode laser...
We report on what we believe is the first demonstration of laser-induced fluorescence (LIF) in flame...
The use of diode lasers for spatially resolved temperature imaging is demonstrated in low-pressure p...
Advances in the field of laser-based combustion diagnostics over the past decades have allowed for d...
Temperature may be considered the most important combustion parameter owing to its exponential influ...
In this work, Scheimpflug lidar has been combined with the thermometric technique two-line atomic fl...
The aim of this work is the development of a non-intrusive multiplexed diode-laser sensor system to ...
Spatially-resolved measurements of flame temperature have been demonstrated with diode lasers for th...
We report on kilohertz-repetition-rate flame temperature measurements performed using blue diode las...
This paper reports on the first application of diode laser based LIF for pointwise temperature measu...
We report on the development of a novel diode laser thermometry technique permitting temperature mea...
The present thesis is concerned with the development and application of a novel planar laser-induced...
The use of diode lasers for spatially resolved temperature imaging is demonstrated in low pressure p...
Temperature measurements have been performed in a low-pressure flame by the technique of diode laser...
We report on what we believe is the first demonstration of laser-induced fluorescence (LIF) in flame...
The use of diode lasers for spatially resolved temperature imaging is demonstrated in low-pressure p...
Advances in the field of laser-based combustion diagnostics over the past decades have allowed for d...
Temperature may be considered the most important combustion parameter owing to its exponential influ...
In this work, Scheimpflug lidar has been combined with the thermometric technique two-line atomic fl...
The aim of this work is the development of a non-intrusive multiplexed diode-laser sensor system to ...