Increasing the peak intensity to which high power laser pulses are focused can open up new regimes of laser-plasma interactions, resulting in the acceleration of ions to higher energies and more efficient generation of energetic photons. Low f-number focusing plasma mirrors, which re-image and demagnify the laser focus, provide an attractive approach to producing higher intensities, without requiring significant changes to the laser system. They are small, enhance the pulse intensity contrast and eliminate the requirement to expose expensive optics directly to target debris. We report on progress made in a programme of work to design, manufacture and optimise ellipsoidal focusing plasma mirrors. Different approaches to manufacturing these i...
The spatial-intensity profile of light reflected during the interaction of an intense laser pulse wi...
Plasma plays an important role in laser fusion research. High power laser is used to drive the react...
We report on a plasma optical shutter to reduce the intensity level of a nanosecond-duration pedesta...
Increasing the peak intensity to which high power laser pulses are focused can open up new regimes o...
Increasing the peak intensity to which high power laser pulses are focused can open up new regimes o...
The design and development of an ellipsoidal F/1 focusing plasmamirror capable of increasing the pea...
The design and development of an ellipsoidal F/1 focusing plasma mirror capable of increasing the pe...
The design of ellipsoidal plasma mirrors (EPM) for the PEARL laser facility is presented. The EPM ac...
Plasma mirrors have become an important tool in high power laser physics due to their ability to sup...
Specular reflection is one of the most fundamental processes of optics. At moderate light intensitie...
High intensity short pulse lasers are being pushed further as applications continue to demand higher...
This thesis reports on experimental investigations examining the role of laser-pulse focal spot size...
Since the inception of the laser, there has been a constant push toward increasing the laser peak in...
Plasma waves excited by intense laser beams can be harnessed to produce femtosecond duration bunches...
The spatial-intensity profile of light reflected during the interaction of an intense laser pulse wi...
Plasma plays an important role in laser fusion research. High power laser is used to drive the react...
We report on a plasma optical shutter to reduce the intensity level of a nanosecond-duration pedesta...
Increasing the peak intensity to which high power laser pulses are focused can open up new regimes o...
Increasing the peak intensity to which high power laser pulses are focused can open up new regimes o...
The design and development of an ellipsoidal F/1 focusing plasmamirror capable of increasing the pea...
The design and development of an ellipsoidal F/1 focusing plasma mirror capable of increasing the pe...
The design of ellipsoidal plasma mirrors (EPM) for the PEARL laser facility is presented. The EPM ac...
Plasma mirrors have become an important tool in high power laser physics due to their ability to sup...
Specular reflection is one of the most fundamental processes of optics. At moderate light intensitie...
High intensity short pulse lasers are being pushed further as applications continue to demand higher...
This thesis reports on experimental investigations examining the role of laser-pulse focal spot size...
Since the inception of the laser, there has been a constant push toward increasing the laser peak in...
Plasma waves excited by intense laser beams can be harnessed to produce femtosecond duration bunches...
The spatial-intensity profile of light reflected during the interaction of an intense laser pulse wi...
Plasma plays an important role in laser fusion research. High power laser is used to drive the react...
We report on a plasma optical shutter to reduce the intensity level of a nanosecond-duration pedesta...