High-harmonic generation (HHG) normally requires a careful adjustment of the driving laser intensity (typically $10^{14} - 10^{15}$ W/cm$^2$) and gas medium parameters to enable good phase matching conditions. In contrast with conventional wisdom, we present experimental results indicating phase-matched HHG in all rare gases, using a high-density medium and a driver laser intensity of around $10^{16}$ W/cm$^2$. The experimental results are corroborated by theoretical simulations, which indicate that ionization-induced self-phase modulation and plasma defocusing self-regulate the driver laser intensity to a level that is appropriate for good phase matching. A ten-fold broadening of the NIR spectrum is observed, which results in the generatio...
High harmonic generation (HHG) at a high repetition rate requires tight focusing of the moderate pea...
We generate high-order harmonics with a 50 W, Yb femtosecond fiber laser system operating at 100 kHz...
Recent advances in optical parametric amplification (OPA) based few-cycle pulse generation at 1.8 \u...
One of the main difficulties to efficiently generating high-order harmonics in long neutral-gas targ...
Extending the photon energy range of bright high-harmonic generation to cover the entire soft X-ray ...
Extreme ultraviolet (XUV) laser radiation is commonly produced via high-harmonic generation (HHG) in...
Isolated attosecond pulses (IAPs) produced through laser-driven high-harmonic generation (HHG) hold ...
High-harmonic-generation in gases (HHG), along with crystal-based nonlinear frequency conversion, re...
High order harmonic generation (HHG) produced by the interaction of an intense laser pulse and a gas...
The concept of critical ionization fraction has been essential for high-harmonic generation, because...
High-harmonic generation (HHG) is a non-linear optical process that can convert laser light with sta...
International audienceWe present a review of some recent results on high-order-harmonic generation, ...
High-harmonic generation (HHG) traditionally combines ~100 near-infrared laser photons to generate b...
We present theoretical studies of high-order harmonic generation in a rare-gas medium. The experimen...
The creation of high energy density plasma states produced during laser–solid interaction on a sub-p...
High harmonic generation (HHG) at a high repetition rate requires tight focusing of the moderate pea...
We generate high-order harmonics with a 50 W, Yb femtosecond fiber laser system operating at 100 kHz...
Recent advances in optical parametric amplification (OPA) based few-cycle pulse generation at 1.8 \u...
One of the main difficulties to efficiently generating high-order harmonics in long neutral-gas targ...
Extending the photon energy range of bright high-harmonic generation to cover the entire soft X-ray ...
Extreme ultraviolet (XUV) laser radiation is commonly produced via high-harmonic generation (HHG) in...
Isolated attosecond pulses (IAPs) produced through laser-driven high-harmonic generation (HHG) hold ...
High-harmonic-generation in gases (HHG), along with crystal-based nonlinear frequency conversion, re...
High order harmonic generation (HHG) produced by the interaction of an intense laser pulse and a gas...
The concept of critical ionization fraction has been essential for high-harmonic generation, because...
High-harmonic generation (HHG) is a non-linear optical process that can convert laser light with sta...
International audienceWe present a review of some recent results on high-order-harmonic generation, ...
High-harmonic generation (HHG) traditionally combines ~100 near-infrared laser photons to generate b...
We present theoretical studies of high-order harmonic generation in a rare-gas medium. The experimen...
The creation of high energy density plasma states produced during laser–solid interaction on a sub-p...
High harmonic generation (HHG) at a high repetition rate requires tight focusing of the moderate pea...
We generate high-order harmonics with a 50 W, Yb femtosecond fiber laser system operating at 100 kHz...
Recent advances in optical parametric amplification (OPA) based few-cycle pulse generation at 1.8 \u...