Since the inception of the laser, there has been a constant push toward increasing the laser peak intensity, as this has lead to opening the exploration of new territories, and the production of compact sources of particles and radiation with unprecedented characteristics. However, increasing the peak laser intensity is usually performed by enhancing the produced laser properties, either by lowering its duration or increasing its energy, which involves a great level of complexity for the laser chain, or comes at great cost. Focusing tightly is another possibility to increase the laser intensity, but this comes at the risk of damaging the optics with target debris, as it requires their placement in close proximity to the interaction region. ...
Plasma plays an important role in laser fusion research. High power laser is used to drive the react...
Since the first demonstration of chirped pulse amplification (CPA) in the mid-1980s, ultrashort puls...
International audienceThe recent and continuous development of powerful laser systems has permitted ...
International audienceSince the inception of the laser, there has been a constant push toward increa...
The design and development of an ellipsoidal F/1 focusing plasma mirror capable of increasing the pe...
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...
Ultra-high intensity lasers are important tools to study the micro structures of our physical world,...
Increasing the peak intensity to which high power laser pulses are focused can open up new regimes o...
Rapid progress in ultra-intense laser technology has resulted in intensity levels surpassing 1022 W/...
The design and development of an ellipsoidal F/1 focusing plasmamirror capable of increasing the pea...
Plasma plays an important role in laser fusion research. High power laser is used to drive the react...
Since the first demonstration of chirped pulse amplification (CPA) in the mid-1980s, ultrashort puls...
International audienceThe recent and continuous development of powerful laser systems has permitted ...
International audienceSince the inception of the laser, there has been a constant push toward increa...
The design and development of an ellipsoidal F/1 focusing plasma mirror capable of increasing the pe...
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...
Ultra-high intensity lasers are important tools to study the micro structures of our physical world,...
Increasing the peak intensity to which high power laser pulses are focused can open up new regimes o...
Rapid progress in ultra-intense laser technology has resulted in intensity levels surpassing 1022 W/...
The design and development of an ellipsoidal F/1 focusing plasmamirror capable of increasing the pea...
Plasma plays an important role in laser fusion research. High power laser is used to drive the react...
Since the first demonstration of chirped pulse amplification (CPA) in the mid-1980s, ultrashort puls...
International audienceThe recent and continuous development of powerful laser systems has permitted ...