We study the temporal aspects of laser-assisted extreme ultraviolet (XUV) photoionization using attosecond pulses of harmonic radiation. The aim of this paper is to establish the general form of the phase of the relevant transition amplitudes and to make the connection with the time-delays that have been recently measured in experiments. We find that the overall phase contains two distinct types of contributions: one is expressed in terms of the phase-shifts of the photoelectron continuum wavefunction while the other is linked to continuum–continuum transitions induced by the infrared (IR) laser probe. Our formalism applies to both kinds of measurements reported so far, namely the ones using attosecond pulse trains of XUV harmonics and the ...
The generation of attosecond-duration (1 as = 10–18 s) coherent light through the process of high-or...
We describe in detail how attosecond delays in laser-assisted photoionization can be computed using ...
International audienceThe material presented in this chapter is based on important advances realized...
We study the temporal aspects of laser-assisted extreme ultraviolet (XUV) photoionization using atto...
We study the temporal aspects of laser-assisted extreme ultraviolet (XUV) photoionization using atto...
This tutorial presents an introduction to the interaction of light and matter on the attosecond time...
A new generation of sources of XUV harmonic radiation, delivering 'attosecond' pulses, makes feasibl...
A new generation of sources of XUV harmonic radiation, delivering 'attosecond' pulses, makes feasibl...
Recent developments in laser technology, in particular the advances in high-harmonic generation, ena...
The material presented in this chapter is based on important advances realized in "attophysics" whic...
We present theoretical studies of the attosecond streaking time delay concept in photoionization via...
International audienceIn a recent work [1], we demonstrated how laser-dressed ionization can be harn...
International audienceIn a recent work [1], we demonstrated how laser-dressed ionization can be harn...
International audienceIn a recent work [1], we demonstrated how laser-dressed ionization can be harn...
Attosecond science refers to physical processes that occur on the natural timescale of electron moti...
The generation of attosecond-duration (1 as = 10–18 s) coherent light through the process of high-or...
We describe in detail how attosecond delays in laser-assisted photoionization can be computed using ...
International audienceThe material presented in this chapter is based on important advances realized...
We study the temporal aspects of laser-assisted extreme ultraviolet (XUV) photoionization using atto...
We study the temporal aspects of laser-assisted extreme ultraviolet (XUV) photoionization using atto...
This tutorial presents an introduction to the interaction of light and matter on the attosecond time...
A new generation of sources of XUV harmonic radiation, delivering 'attosecond' pulses, makes feasibl...
A new generation of sources of XUV harmonic radiation, delivering 'attosecond' pulses, makes feasibl...
Recent developments in laser technology, in particular the advances in high-harmonic generation, ena...
The material presented in this chapter is based on important advances realized in "attophysics" whic...
We present theoretical studies of the attosecond streaking time delay concept in photoionization via...
International audienceIn a recent work [1], we demonstrated how laser-dressed ionization can be harn...
International audienceIn a recent work [1], we demonstrated how laser-dressed ionization can be harn...
International audienceIn a recent work [1], we demonstrated how laser-dressed ionization can be harn...
Attosecond science refers to physical processes that occur on the natural timescale of electron moti...
The generation of attosecond-duration (1 as = 10–18 s) coherent light through the process of high-or...
We describe in detail how attosecond delays in laser-assisted photoionization can be computed using ...
International audienceThe material presented in this chapter is based on important advances realized...