Control of the collective response of plasma particles to intense laser light is intrinsic to relativistic optics, the development of compact laser-driven particle and radiation sources, as well as investigations of some laboratory astrophysics phenomena. We recently demonstrated that a relativistic plasma aperture produced in an ultra-thin foil at the focus of intense laser radiation can induce diffraction, enabling polarization-based control of the collective motion of plasma electrons. Here we show that under these conditions the electron dynamics are mapped into the beam of protons accelerated via strong charge-separation-induced electrostatic fields. It is demonstrated experimentally and numerically via 3D particle-in-cell simulations ...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The production of polarized proton beams with multi-GeV energies in ultraintense laser interaction w...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
The collective response of charged particles to intense fields is intrinsic to plasma accelerators a...
The collective response of electrons in an ultrathin foil target irradiated by an ultraintense (~6x1...
The collective response of electrons in an ultrathin foil target irradiated by an ultraintense (~6x1...
Laser-driven proton acceleration from ultrathin foils in the relativistic transparency regime is inv...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The spatio-temporal and polarisation properties of intense light is important in wide-ranging topics...
The spatio-temporal and polarisation properties of intense light is important in wide-ranging topics...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The production of polarized proton beams with multi-GeV energies in ultraintense laser interaction w...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
The collective response of charged particles to intense fields is intrinsic to plasma accelerators a...
The collective response of electrons in an ultrathin foil target irradiated by an ultraintense (~6x1...
The collective response of electrons in an ultrathin foil target irradiated by an ultraintense (~6x1...
Laser-driven proton acceleration from ultrathin foils in the relativistic transparency regime is inv...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The spatio-temporal and polarisation properties of intense light is important in wide-ranging topics...
The spatio-temporal and polarisation properties of intense light is important in wide-ranging topics...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The range of potential applications of compact laser-plasma ion sources motivates the development of...
The production of polarized proton beams with multi-GeV energies in ultraintense laser interaction w...