Generation of hot and dense plasmas under relativistic interaction of ultra-intense high-contrast femtosecond laser pulses with solid targets is among the most exciting research topics in high energy density physics. Such plasmas would be also extremely beneficial for the area of astrophysics and nuclear physics, for the development of the efficient sources of hard-X-ray radiation. Nanophotonics opens a new chapter in this research. It was recently argued that nanowire arrays used as targets allow a larger penetration depth of the laser energy to a m-scale leading to the volumetric plasma heating. As a result of the very efficient laser energy absorption, electron densities of 1023-1024 cm-3 with multi-keV temperatures can be reached. Howev...
Abstract: Laser interaction with uniform and nanostructured near-critical plasmas has been investiga...
The continuous progress in laser installations has already lead to ultra-short pulses capable of ach...
Laser absorption is one of the most important parameters governing laser-matter interactions. The la...
Generation of hot and dense plasmas under relativistic interaction of ultra-intense high-contrast fe...
We report on experimental results in a new regime of relativistic light-matter interaction employing...
This thesis presents the result of a study, within the scope of the PLANETA experiment (an INFN rese...
Near-critical plasmas irradiated at ultra-high laser intensities (I > 1018W/cm2) allow to improve th...
We have studied particle acceleration in different nanostructured targets irradiated by high intensi...
grantor: University of TorontoLaser plasmas from a new type of nanostructured surface are ...
Metal nanowires (NWs) - nanostructures 20-100 nm in diameter and up to tens of micrometers long - b...
We report a significant enhancement in both the energy and the flux of relativistic electrons accele...
High energy density plasma formation from intense laser-irradiated foam targets composed of disorder...
International audienceThe capability of plasmas to sustain ultrahigh electric fields has attracted c...
Conventional solid-density laser-plasma targets quickly ionize to make a plasma mirror, which largel...
We present a detailed investigation of X-ray emission from both flat and nanowire zinc oxide targets...
Abstract: Laser interaction with uniform and nanostructured near-critical plasmas has been investiga...
The continuous progress in laser installations has already lead to ultra-short pulses capable of ach...
Laser absorption is one of the most important parameters governing laser-matter interactions. The la...
Generation of hot and dense plasmas under relativistic interaction of ultra-intense high-contrast fe...
We report on experimental results in a new regime of relativistic light-matter interaction employing...
This thesis presents the result of a study, within the scope of the PLANETA experiment (an INFN rese...
Near-critical plasmas irradiated at ultra-high laser intensities (I > 1018W/cm2) allow to improve th...
We have studied particle acceleration in different nanostructured targets irradiated by high intensi...
grantor: University of TorontoLaser plasmas from a new type of nanostructured surface are ...
Metal nanowires (NWs) - nanostructures 20-100 nm in diameter and up to tens of micrometers long - b...
We report a significant enhancement in both the energy and the flux of relativistic electrons accele...
High energy density plasma formation from intense laser-irradiated foam targets composed of disorder...
International audienceThe capability of plasmas to sustain ultrahigh electric fields has attracted c...
Conventional solid-density laser-plasma targets quickly ionize to make a plasma mirror, which largel...
We present a detailed investigation of X-ray emission from both flat and nanowire zinc oxide targets...
Abstract: Laser interaction with uniform and nanostructured near-critical plasmas has been investiga...
The continuous progress in laser installations has already lead to ultra-short pulses capable of ach...
Laser absorption is one of the most important parameters governing laser-matter interactions. The la...