Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pulse powers. The breakdown threshold for optical components in these systems, however, demands beam diameters up to 1 m. Raman amplification of laser beams promises a breakthrough by the use of much smaller amplifying media, i.e., millimeter-diameter-wide plasmas. Through the first large-scale multidimensional particle-in-cell simulations of this process, we have identified the parameter regime where multipetawatt peak laser powers can be reached, while the influence of damaging laser-plasma instabilities is only minor. Snapshots of the probe laser pulse being amplified, generated using state-of-the-art visualization techniques, are presented
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
This thesis deals with the interaction of short-pulse lasers with plasmas to accelerate electrons to...
WOS:000301051200006 (Nº de Acesso Web of Science)“Prémio Científico ISCTE-IUL 2012”Raman amplificati...
Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pul...
Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pul...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
By using the amplifying laser pulse in a plasma-based backward Raman laser amplifier to generate the...
The recently proposed backward Raman laser amplification scheme utilizes the stimulated Raman backsc...
We present analysis and simulations of electron trapping effect in the Raman pulse amplification in ...
Current high-power laser amplifiers use chirped-pulse amplification to prevent damage to their solid...
Abstract—Raman amplification of a short laser pulse by a counter-propagating pump in a plasma is sim...
Focusing of an intense laser pulse produced by backward Raman pulse amplification (BRA) has been num...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
The demand for high-intensity lasers has grown ever since the invention of lasers in 1960, owing to ...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma param- e...
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
This thesis deals with the interaction of short-pulse lasers with plasmas to accelerate electrons to...
WOS:000301051200006 (Nº de Acesso Web of Science)“Prémio Científico ISCTE-IUL 2012”Raman amplificati...
Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pul...
Contemporary high-power laser systems make use of solid-state laser technology to reach petawatt pul...
Laser pulses have the shortest duration, smallest spatial extent, highest power, longest range and h...
By using the amplifying laser pulse in a plasma-based backward Raman laser amplifier to generate the...
The recently proposed backward Raman laser amplification scheme utilizes the stimulated Raman backsc...
We present analysis and simulations of electron trapping effect in the Raman pulse amplification in ...
Current high-power laser amplifiers use chirped-pulse amplification to prevent damage to their solid...
Abstract—Raman amplification of a short laser pulse by a counter-propagating pump in a plasma is sim...
Focusing of an intense laser pulse produced by backward Raman pulse amplification (BRA) has been num...
Ultra high power laser amplifier systems based on plasma may provide a pathway to reach petawatt to ...
The demand for high-intensity lasers has grown ever since the invention of lasers in 1960, owing to ...
Brillouin amplification in plasma is more resilient to fluctuations in the laser and plasma param- e...
Raman or Brillouin amplification of a laser beam in plasma has long been seen as a way to reach mult...
This thesis deals with the interaction of short-pulse lasers with plasmas to accelerate electrons to...
WOS:000301051200006 (Nº de Acesso Web of Science)“Prémio Científico ISCTE-IUL 2012”Raman amplificati...