International audienceTightly focused, ultrashort radially polarized laser beams have a large longitudinal field, which provides a strong motivation for direct particle acceleration and manipulation in a vacuum. The broadband nature of these beams means that chromatic properties of propagation and focusing are important to consider. We show via single-particle simulations that using the correct frequency-dependent beam parameters is imperative, especially as the pulse duration decreases to the few-cycle regime. The results with different spatio-spectral amplitude profiles show either a drastic increase or decrease of the final accelerated electron energy depending on the shape, motivating both proper characterization and potentially a route...
International audienceLaser-plasma acceleration(1,2) is an emerging technique for accelerating elect...
In the past years, there has been a growing interest in innovative applications of radially polarize...
Compact laser-driven accelerators are pursued heavily worldwide because they make novel methods and ...
International audienceTightly focused, ultrashort radially polarized laser beams have a large longit...
Exact closed-form solutions to Maxwell’s equations are used to investigate electron acceleration dri...
International audienceWe report with single-particle simulations that longitudinal chromatism, a com...
Electron acceleration in a tightly focused ultra-intensity linear polarized laser beam is investigat...
Encouraged by recent advances in radially-polarized laser technology, simulations have been performe...
International audienceWe present experimental results of vacuum laser acceleration (VLA) of electron...
We present a relativistic single particle simulation of vacuum acceleration of an electron by a high...
We propose a direct electron acceleration scheme that uses a two-color pulsed radially polarized las...
Results from theoretical investigations are presented which show that protons can be accelerated fro...
International audienceWe propose a method to generate femtosecond, relativistic, and high-charge ele...
International audienceLaser-plasma acceleration(1,2) is an emerging technique for accelerating elect...
In the past years, there has been a growing interest in innovative applications of radially polarize...
Compact laser-driven accelerators are pursued heavily worldwide because they make novel methods and ...
International audienceTightly focused, ultrashort radially polarized laser beams have a large longit...
Exact closed-form solutions to Maxwell’s equations are used to investigate electron acceleration dri...
International audienceWe report with single-particle simulations that longitudinal chromatism, a com...
Electron acceleration in a tightly focused ultra-intensity linear polarized laser beam is investigat...
Encouraged by recent advances in radially-polarized laser technology, simulations have been performe...
International audienceWe present experimental results of vacuum laser acceleration (VLA) of electron...
We present a relativistic single particle simulation of vacuum acceleration of an electron by a high...
We propose a direct electron acceleration scheme that uses a two-color pulsed radially polarized las...
Results from theoretical investigations are presented which show that protons can be accelerated fro...
International audienceWe propose a method to generate femtosecond, relativistic, and high-charge ele...
International audienceLaser-plasma acceleration(1,2) is an emerging technique for accelerating elect...
In the past years, there has been a growing interest in innovative applications of radially polarize...
Compact laser-driven accelerators are pursued heavily worldwide because they make novel methods and ...