We report on a plasma optical shutter to reduce the intensity level of a nanosecond-duration pedestal of amplified spontaneous emission (ASE) using an ultrathin foil. The foil is ionized by the ASE prepulse and forms an expanding underdense preplasma, which enables the main laser pulse transmission, leading to an enhancement in temporal contrast. When such a plasma shutter is placed in front of a main target of interest, the preplasma profiles observed are similar to that produced from a single-layer reference target irradiated by a high-contrast laser, and can be finely tuned by varying the shutter thickness. Proton beams with significantly reduced divergence and higher flux density were measured experimentally using the double-foil design...
We present a detailed study of the electric and magnetic fields, which are created on plasma vacuum ...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
Structured solid targets are widely investigated to increase the energy absorption of high-power las...
We report on a plasma optical shutter to reduce the intensity level of a nanosecond-duration pedesta...
In this work, we investigate the application of the plasma shutters for heavy ion acceleration drive...
The properties of beams of high energy protons accelerated during ultraintense, picosecond laser-irr...
Multiple ion acceleration mechanisms can occur when an ultrathin foil is irradiated with an intense ...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The collimation of proton beams accelerated during ultra-intense laser irradiation of thin aluminum ...
Laser-driven ion sources are a rapidly developing technology producing high energy, high peak curren...
Increasing the peak intensity to which high power laser pulses are focused can open up new regimes o...
Laser-driven proton acceleration from ultrathin foils is investigated experimentally using F/3 and F...
This thesis presents experimental measurements, supported by particle-in-cell simulations, of ion be...
At sufficiently high laser intensities, the rapid heating to relativistic velocities and resulting d...
We investigate how next-generation laser pulses at 10-200PW interact with a solid target in the pres...
We present a detailed study of the electric and magnetic fields, which are created on plasma vacuum ...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
Structured solid targets are widely investigated to increase the energy absorption of high-power las...
We report on a plasma optical shutter to reduce the intensity level of a nanosecond-duration pedesta...
In this work, we investigate the application of the plasma shutters for heavy ion acceleration drive...
The properties of beams of high energy protons accelerated during ultraintense, picosecond laser-irr...
Multiple ion acceleration mechanisms can occur when an ultrathin foil is irradiated with an intense ...
The dynamics of the plasma critical density surface in an ultra-thin foil target irradiated by an ul...
The collimation of proton beams accelerated during ultra-intense laser irradiation of thin aluminum ...
Laser-driven ion sources are a rapidly developing technology producing high energy, high peak curren...
Increasing the peak intensity to which high power laser pulses are focused can open up new regimes o...
Laser-driven proton acceleration from ultrathin foils is investigated experimentally using F/3 and F...
This thesis presents experimental measurements, supported by particle-in-cell simulations, of ion be...
At sufficiently high laser intensities, the rapid heating to relativistic velocities and resulting d...
We investigate how next-generation laser pulses at 10-200PW interact with a solid target in the pres...
We present a detailed study of the electric and magnetic fields, which are created on plasma vacuum ...
Ion acceleration driven by the interaction of an ultraintense (2x10^20 Wcm^-2) laser pulse with an u...
Structured solid targets are widely investigated to increase the energy absorption of high-power las...