We present quantum-beat spectroscopy of excited states of helium atoms populated selectively with high-order-harmonic emission below the atomic ionization potential by means of low-pass filtering of the pump radiation. The created electron wave packet is ionized by few-cycle infrared (IR) pulses leading to characteristic peaks in the photoelectron yield, which beat with a frequency proportional to the energy gap between the states involved in the two-color photoionization process. Minimizing the direct ionization by the extreme ultraviolet (XUV) radiation, we can follow the evolution of the electron wave packet also in the region of temporal pump-probe overlap. A detailed time-frequency analysis of the quantum beats and direct comparison wi...
An extreme-ultraviolet (XUV) laser pulse consisting of harmonics of a fundamental near-infrared (NIR...
A pump-probe technique has been applied for measuring the lifetimes and absolute photoionization cro...
We present a method for the characterization of bound-electron wave packets generated by a broadband...
We present quantum-beat spectroscopy of excited states of helium atoms populated selectively with hi...
We explore quantum beats in the photoelectron signal produced when a bound electron wave packet crea...
We show that we can probe the components of an attosecond bound electron wave packet by mapping the ...
Photoelectron spectra measured in the attosecond quantum beat spectroscopy experiment on helium were...
Electron dynamics in atoms and molecules occurs on a time-scale of attoseconds (10⁻¹⁸s). With the av...
Abstract: Ionization of laser-dressed atomic helium is investigated with focus on photoelectron angu...
Contains fulltext : 110236.pdf (publisher's version ) (Open Access)Using high-orde...
We report on the observation of time-resolved quantum beats in the helium fluorescence from the tran...
Using high-order harmonic attosecond pulse trains, we investigate the photoionization dynamics and t...
Two-color ionization is a powerful method for characterizing light fields and investigating atomic a...
We study two-photon double ionization of helium in its ground state at sufficiently low laser intens...
An extreme-ultraviolet (XUV) laser pulse consisting of harmonics of a fundamental near-infrared (NIR...
A pump-probe technique has been applied for measuring the lifetimes and absolute photoionization cro...
We present a method for the characterization of bound-electron wave packets generated by a broadband...
We present quantum-beat spectroscopy of excited states of helium atoms populated selectively with hi...
We explore quantum beats in the photoelectron signal produced when a bound electron wave packet crea...
We show that we can probe the components of an attosecond bound electron wave packet by mapping the ...
Photoelectron spectra measured in the attosecond quantum beat spectroscopy experiment on helium were...
Electron dynamics in atoms and molecules occurs on a time-scale of attoseconds (10⁻¹⁸s). With the av...
Abstract: Ionization of laser-dressed atomic helium is investigated with focus on photoelectron angu...
Contains fulltext : 110236.pdf (publisher's version ) (Open Access)Using high-orde...
We report on the observation of time-resolved quantum beats in the helium fluorescence from the tran...
Using high-order harmonic attosecond pulse trains, we investigate the photoionization dynamics and t...
Two-color ionization is a powerful method for characterizing light fields and investigating atomic a...
We study two-photon double ionization of helium in its ground state at sufficiently low laser intens...
An extreme-ultraviolet (XUV) laser pulse consisting of harmonics of a fundamental near-infrared (NIR...
A pump-probe technique has been applied for measuring the lifetimes and absolute photoionization cro...
We present a method for the characterization of bound-electron wave packets generated by a broadband...