A general scaling formalism for nonlinear light-matter interactions in gases is presented and experimentally verified. The formalism enables to conveniently extrapolate nonlinear phenomena, such as filamentation or high-order harmonic generation, to new laser parameters
International audienceWe present a review of some recent results on high-order-harmonic generation, ...
SIGLEAvailable from British Library Document Supply Centre- DSC:DX74026/87 / BLDSC - British Library...
The system of a cold atomic gas in an optical lattice is governed by two factors: nonlinearity origi...
Extrapolating nonlinear phenomena, such as filamentation, to new parameters as e.g. to higher pulse ...
Nonlinear optical methods are becoming ubiquitous in many areas of modern photonics. They are, howev...
Scaling attosecond sources to higher pulse energy and/or repetition rate can benefit many applicatio...
Supplemental document Originally published in Optica on 20 January 2016 (optica-3-1-75
We demonstrate numerically that the long-wavelength nonlinear dipole moment and ionization rate vers...
The generation of short pulses of electromagnetic radiations rely in many cases on nonlinear interac...
This book attests to the fact continuum generation has become both technically and conceptually impo...
This book is focused on the nonlinear theoretical and mathematical problems associated with ultrafas...
This book is mostly concerned on the experimental research of the nonlinear optical characteristics ...
International audienceA simple method to evaluate the nonlinear propagation regimes in gases is demo...
We examine some simple models describing aspects of the interaction of high power laser light with d...
With progress in ultrashort ultraintense laser technologies the peak power of a laser pulse increase...
International audienceWe present a review of some recent results on high-order-harmonic generation, ...
SIGLEAvailable from British Library Document Supply Centre- DSC:DX74026/87 / BLDSC - British Library...
The system of a cold atomic gas in an optical lattice is governed by two factors: nonlinearity origi...
Extrapolating nonlinear phenomena, such as filamentation, to new parameters as e.g. to higher pulse ...
Nonlinear optical methods are becoming ubiquitous in many areas of modern photonics. They are, howev...
Scaling attosecond sources to higher pulse energy and/or repetition rate can benefit many applicatio...
Supplemental document Originally published in Optica on 20 January 2016 (optica-3-1-75
We demonstrate numerically that the long-wavelength nonlinear dipole moment and ionization rate vers...
The generation of short pulses of electromagnetic radiations rely in many cases on nonlinear interac...
This book attests to the fact continuum generation has become both technically and conceptually impo...
This book is focused on the nonlinear theoretical and mathematical problems associated with ultrafas...
This book is mostly concerned on the experimental research of the nonlinear optical characteristics ...
International audienceA simple method to evaluate the nonlinear propagation regimes in gases is demo...
We examine some simple models describing aspects of the interaction of high power laser light with d...
With progress in ultrashort ultraintense laser technologies the peak power of a laser pulse increase...
International audienceWe present a review of some recent results on high-order-harmonic generation, ...
SIGLEAvailable from British Library Document Supply Centre- DSC:DX74026/87 / BLDSC - British Library...
The system of a cold atomic gas in an optical lattice is governed by two factors: nonlinearity origi...