International audienceThis Letter proposes a realistic implementation of the curved relativistic mirror concept to reach unprecedented light intensities in experiments. The scheme is based on relativistic plasma mirrors that are optically curved by laser radiation pressure. Its validity is supported by cutting-edge three-dimensional particle-in-cell simulations and a theoretical model, which show that intensities above 1025 W cm−2 could be reached with a 3 PetaWatt (PW) laser. Its very high robustness to laser and plasma imperfections is shown to surpass all previous schemes and should enable its implementation on existing PW laser facilities
The nature of how light interacts with plasma is fundamentally altered when the bulk of the electron...
A relativistic flying mirror is a moving mirror that can reflect an incoming laser into a shorter- w...
International audienceAccelerating particles to relativistic energies over very short distances usin...
International audienceThis Letter proposes a realistic implementation of the curved relativistic mir...
Following the advent of petawatt (PW)-class lasers already capable of achieving light intensities of...
In this letter, cutting-edge 3D Particle-In-Cell simulations are used to demonstrate that so-called ...
International audienceReaching light intensities above 1025 W cm−2 and up to the Schwinger limit of ...
International audienceThe quantum vacuum plays a central role in physics. Quantum electrodynamics (Q...
International audienceThe advent of ultrahigh-power femtosecond lasers creates a need for an entirel...
The up-shifting and longitudinal compression of electromagnetic waves has been shown possible with r...
TheReview covers recent progress in laser-matter interaction at intensities above 1018 W cm−2. At th...
We report our achievement on relativistic flying mirrors done at Kansai Photon Science Institute, QS...
Efficient coupling of intense laser pulses to solid-density matter is critical to many applications ...
Illuminating matter with petawatt (one quadrillion watts) laser light creates extreme states of plas...
The nature of how light interacts with plasma is fundamentally altered when the bulk of the electron...
A relativistic flying mirror is a moving mirror that can reflect an incoming laser into a shorter- w...
International audienceAccelerating particles to relativistic energies over very short distances usin...
International audienceThis Letter proposes a realistic implementation of the curved relativistic mir...
Following the advent of petawatt (PW)-class lasers already capable of achieving light intensities of...
In this letter, cutting-edge 3D Particle-In-Cell simulations are used to demonstrate that so-called ...
International audienceReaching light intensities above 1025 W cm−2 and up to the Schwinger limit of ...
International audienceThe quantum vacuum plays a central role in physics. Quantum electrodynamics (Q...
International audienceThe advent of ultrahigh-power femtosecond lasers creates a need for an entirel...
The up-shifting and longitudinal compression of electromagnetic waves has been shown possible with r...
TheReview covers recent progress in laser-matter interaction at intensities above 1018 W cm−2. At th...
We report our achievement on relativistic flying mirrors done at Kansai Photon Science Institute, QS...
Efficient coupling of intense laser pulses to solid-density matter is critical to many applications ...
Illuminating matter with petawatt (one quadrillion watts) laser light creates extreme states of plas...
The nature of how light interacts with plasma is fundamentally altered when the bulk of the electron...
A relativistic flying mirror is a moving mirror that can reflect an incoming laser into a shorter- w...
International audienceAccelerating particles to relativistic energies over very short distances usin...