Ultrafast atomic processes, such as excitation and ionization occurring on the femtosecond or shorter time scale, were explored by employing attosecond high-harmonic pulses. With the absorption of a suitable high-harmonic photon a He atom was ionized, or resonantly excited with further ionization by absorbing a number of infrared photons. The electron wave packets liberated by the two processes generated an interference containing the information on ultrafast atomic dynamics. The attosecond electron wave packet, including the phase, from the ground state was reconstructed first and, subsequently, that from the 1s3p state was retrieved by applying the holographic technique to the photoelectron spectra comprising the interference between the ...
Treating the correlated behaviour of multiple particles is challenging for both theory and experimen...
Ultrafast processes in matter, such as the electron emission following light absorption, can now be ...
Attosecond electron wavepackets are produced when an intense laser field ionizes an atom or a molecu...
Electron dynamics in atoms and molecules occurs on a time-scale of attoseconds (10⁻¹⁸s). With the av...
We present a method for the characterization of bound-electron wave packets generated by a broadband...
Important processes initiated by light absorption in matter are known to evolve on an ultrafast time...
International audienceThe dynamics of quantum systems are encoded in the amplitude and phase of wave...
The dynamics of quantum systems are encoded in the amplitude and phase of wave packets. However, the...
The generation of intense, femtosecond-duration laser pulses using near-IR to IR wavelengths of ligh...
A complete quantum-mechanical description of matter and its interaction with the environment require...
This thesis describes how photoemission stimulated by an attosecond pulse train (APT) can be used to...
Contains fulltext : 110236.pdf (publisher's version ) (Open Access)Using high-orde...
Through the advent of high-order harmonic generation and attosecond light pulses, photoionization dy...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
Treating the correlated behaviour of multiple particles is challenging for both theory and experimen...
Ultrafast processes in matter, such as the electron emission following light absorption, can now be ...
Attosecond electron wavepackets are produced when an intense laser field ionizes an atom or a molecu...
Electron dynamics in atoms and molecules occurs on a time-scale of attoseconds (10⁻¹⁸s). With the av...
We present a method for the characterization of bound-electron wave packets generated by a broadband...
Important processes initiated by light absorption in matter are known to evolve on an ultrafast time...
International audienceThe dynamics of quantum systems are encoded in the amplitude and phase of wave...
The dynamics of quantum systems are encoded in the amplitude and phase of wave packets. However, the...
The generation of intense, femtosecond-duration laser pulses using near-IR to IR wavelengths of ligh...
A complete quantum-mechanical description of matter and its interaction with the environment require...
This thesis describes how photoemission stimulated by an attosecond pulse train (APT) can be used to...
Contains fulltext : 110236.pdf (publisher's version ) (Open Access)Using high-orde...
Through the advent of high-order harmonic generation and attosecond light pulses, photoionization dy...
Attosecond pulses allow the study of electrons on their natural timescale. They are created from the...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
Treating the correlated behaviour of multiple particles is challenging for both theory and experimen...
Ultrafast processes in matter, such as the electron emission following light absorption, can now be ...
Attosecond electron wavepackets are produced when an intense laser field ionizes an atom or a molecu...