Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics in matter. In the case of photoionization, entanglement of the photoelectron with the ion is a well-known source of decoherence when only one of the particles is measured. Here, we investigate decoherence due to entanglement of the radial and angular degrees of freedom of the photoelectron. We study two-photon ionization via the 2s2p autoionizing state in He using high spectral resolution photoelectron interferometry. Combining experiment and theory, we show that the strong dipole coupling of the 2s2p and 2p2 states results in the entanglement of the angular and radial degrees of freedom. This translates, in angle-integrated measurements, into a dynami...
The advent of attosecond techniques opens up the possibility to observe experimentally electron dyna...
Ionisation with ultrashort pulses in the extreme ultraviolet (XUV) regime can be used to prepare an ...
International audienceLaser-dressed photoemission spectroscopy has established itself as the gold st...
Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics in matter....
Abstract: Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics ...
Through the advent of high-order harmonic generation and attosecond light pulses, photoionization dy...
The motion of electrons in atoms, molecules, and in condensed matter unfolds on a time scale from th...
The investigation of coherent dynamics induced by photoionization of atoms or molecules by extreme u...
In simple one-photon ionization, decoherence occurs due to entanglement between ion and photoelectro...
The interaction of extreme ultraviolet light with matter can lead to the emission of an electron in ...
Photoionization using attosecond pulses can lead to the formation of coherent superpositions of the ...
Chiral light-matter interactions have been investigated for two centuries, leading to the discovery ...
Coherence of particles in form of matter waves is one of the basic properties of nature which distin...
Strong-field photoionization of argon dimers by a few-cycle laser pulse is investigated using electr...
We study the dynamical photoelectron holography of an excited hydrogen atom with a strong midinfrare...
The advent of attosecond techniques opens up the possibility to observe experimentally electron dyna...
Ionisation with ultrashort pulses in the extreme ultraviolet (XUV) regime can be used to prepare an ...
International audienceLaser-dressed photoemission spectroscopy has established itself as the gold st...
Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics in matter....
Abstract: Quantum coherence plays a fundamental role in the study and control of ultrafast dynamics ...
Through the advent of high-order harmonic generation and attosecond light pulses, photoionization dy...
The motion of electrons in atoms, molecules, and in condensed matter unfolds on a time scale from th...
The investigation of coherent dynamics induced by photoionization of atoms or molecules by extreme u...
In simple one-photon ionization, decoherence occurs due to entanglement between ion and photoelectro...
The interaction of extreme ultraviolet light with matter can lead to the emission of an electron in ...
Photoionization using attosecond pulses can lead to the formation of coherent superpositions of the ...
Chiral light-matter interactions have been investigated for two centuries, leading to the discovery ...
Coherence of particles in form of matter waves is one of the basic properties of nature which distin...
Strong-field photoionization of argon dimers by a few-cycle laser pulse is investigated using electr...
We study the dynamical photoelectron holography of an excited hydrogen atom with a strong midinfrare...
The advent of attosecond techniques opens up the possibility to observe experimentally electron dyna...
Ionisation with ultrashort pulses in the extreme ultraviolet (XUV) regime can be used to prepare an ...
International audienceLaser-dressed photoemission spectroscopy has established itself as the gold st...