The advent of Petawatt-class laser systems allows generating electro-magnetic fields of unprecedented strength in a controlled environment, driving increasingly more efforts to probe yet unobserved processes through their interaction with the quantum vacuum. Still, the lowest intensity scale governing these effects lies orders of magnitude beyond foreseen capabilities, so that such endeavor is expected to remain extremely challenging. In recent years, however, plasma mirrors have emerged as a promising bridge across this gap, by enabling the conversion of intense infrared laser pulses into coherently focused Doppler harmonic beams lying in the X-UV range. In this work, we present quantitative predictions on the quantum vacuum signatures pro...
International audienceIn [Phys. Rev. Lett. 98, 103902 (2007)], Tarasevitch et al. demonstrate the ex...
We study nonperturbative pair production in intense, focused laser fields called e-dipole pulses. We...
International audienceWhen an intense femtosecond laser pulse hits an optically-polished surface, it...
International audienceThe advent of petawatt-class laser systems allows generating electromagnetic f...
In the wake of steady progress in laser technology opening up to an ever wider range of physical con...
International audienceThe quantum vacuum plays a central role in physics. Quantum electrodynamics (Q...
When photons propagate in vacuum they may fluctuate into matter pairs thus allowing the vacuum to be...
Understanding the interplay of strong-field QED and collective plasma effects is important for expla...
International audienceWe report the first demonstration of high-harmonic generation from plasma mirr...
The fundamental theory of quantum electrodynamics predicts the vacuum to resemble a polarizable medi...
Experimental efforts toward the detection of the nonperturbative strong-field regime of the Breit-Wh...
We show that coherent harmonic focusing provides an efficient mechanism to boost all-optical signatu...
We report evidence for the first generation of XUV spectra from relativistic surface high-harmonic g...
When focusing an ultra-intense femtosecond laser pulse [I>10¹⁶W/cm²] onto a solid target, this targe...
High power short pulse lasers provide a promising route to study the strong field effects of the qua...
International audienceIn [Phys. Rev. Lett. 98, 103902 (2007)], Tarasevitch et al. demonstrate the ex...
We study nonperturbative pair production in intense, focused laser fields called e-dipole pulses. We...
International audienceWhen an intense femtosecond laser pulse hits an optically-polished surface, it...
International audienceThe advent of petawatt-class laser systems allows generating electromagnetic f...
In the wake of steady progress in laser technology opening up to an ever wider range of physical con...
International audienceThe quantum vacuum plays a central role in physics. Quantum electrodynamics (Q...
When photons propagate in vacuum they may fluctuate into matter pairs thus allowing the vacuum to be...
Understanding the interplay of strong-field QED and collective plasma effects is important for expla...
International audienceWe report the first demonstration of high-harmonic generation from plasma mirr...
The fundamental theory of quantum electrodynamics predicts the vacuum to resemble a polarizable medi...
Experimental efforts toward the detection of the nonperturbative strong-field regime of the Breit-Wh...
We show that coherent harmonic focusing provides an efficient mechanism to boost all-optical signatu...
We report evidence for the first generation of XUV spectra from relativistic surface high-harmonic g...
When focusing an ultra-intense femtosecond laser pulse [I>10¹⁶W/cm²] onto a solid target, this targe...
High power short pulse lasers provide a promising route to study the strong field effects of the qua...
International audienceIn [Phys. Rev. Lett. 98, 103902 (2007)], Tarasevitch et al. demonstrate the ex...
We study nonperturbative pair production in intense, focused laser fields called e-dipole pulses. We...
International audienceWhen an intense femtosecond laser pulse hits an optically-polished surface, it...