The nature of how light interacts with plasma is fundamentally altered when the bulk of the electrons become relativistic, manifested as an enhanced transparency of the plasma. Three dimensional particle-in-cell simulations demonstrate that this enhanced transparency of a relativistically hot plasma is sensitive to how the energy is partitioned between different degrees of freedom. For an anisotropic electron distribution, propagation characteristics, like the critical density, will depend on the polarization of the electromagnetic wave. Despite the onset of the Weibel instability in such plasmas, the anisotropy can persist long enough to affect laser propagation. This plasma can then function as a polarizer or a wave plate to dramatically...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Propagation of short and ultra-intense laser pulses in a semi-infinite space of overdense hydrogen p...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
The nature of how light interacts with plasma is fundamentally altered when the bulk of the electron...
The collective response of electrons in an ultrathin foil target irradiated by an ultraintense (~6x1...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
We investigated the effects of relativistic transparency (RT) on electrostatic shock ion acceleratio...
With the advent of multi-petawatt lasers, the relativistic transparency regime of laser-plasma inter...
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...
Superponderomotive-energy electrons are observed experimentally from the interaction of an intense l...
TheReview covers recent progress in laser-matter interaction at intensities above 1018 W cm−2. At th...
The interaction of relativistic laser light with overdense plasmas is studied by three-dimensional p...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Relativistic opaqueness has been considered to be a sufficient condition for the stable compression ...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Propagation of short and ultra-intense laser pulses in a semi-infinite space of overdense hydrogen p...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
The nature of how light interacts with plasma is fundamentally altered when the bulk of the electron...
The collective response of electrons in an ultrathin foil target irradiated by an ultraintense (~6x1...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
We investigated the effects of relativistic transparency (RT) on electrostatic shock ion acceleratio...
With the advent of multi-petawatt lasers, the relativistic transparency regime of laser-plasma inter...
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...
Superponderomotive-energy electrons are observed experimentally from the interaction of an intense l...
TheReview covers recent progress in laser-matter interaction at intensities above 1018 W cm−2. At th...
The interaction of relativistic laser light with overdense plasmas is studied by three-dimensional p...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Relativistic opaqueness has been considered to be a sufficient condition for the stable compression ...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...
Propagation of short and ultra-intense laser pulses in a semi-infinite space of overdense hydrogen p...
Control of the collective response of plasma particles to intense laser light is intrinsic to relati...