Contains fulltext : 110236.pdf (publisher's version ) (Open Access)Using high-order harmonic attosecond pulse trains, we investigate the photoionization dynamics and transient electronic structure of a helium atom in the presence of moderately strong ( approximately 10(12) W cm(-2)) femtosecond laser pulses. We observe quantum interferences between photoexcitation paths from the ground state to different laser-dressed Floquet state components. As the intensity ramps on femtosecond time scales, we observe switching between ionization channels mediated by different atomic resonances. Using precision measurements of ion yields and photoelectron distributions, the quantum phase difference between interfering paths is extracted...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
We study two-photon double ionization of helium in its ground state at sufficiently low laser intens...
We present transient absorption spectra of an extreme ultraviolet attosecond pulse train in helium d...
Using high-order harmonic attosecond pulse trains, we investigate the photoionization dynamics and t...
Electron dynamics in atoms and molecules occurs on a time-scale of attoseconds (10⁻¹⁸s). With the av...
We present experimental results and a theoretical framework for understanding the ionization dynamic...
When small quantum systems, atoms or molecules, absorb a high-energy photon, electrons are emitted w...
Helium atoms in the presence of extreme ultraviolet light pulses can lose electrons through direct p...
Quantum mechanical motion of electrons in atoms and molecules is at the heart of many photophysical ...
Helium atoms in the presence of extreme ultraviolet light pulses can lose electrons through direct p...
When high intensity laser light is focused into a gaseous target, high energy photons can be produce...
Ultrafast atomic processes, such as excitation and ionization occurring on the femtosecond or shorte...
We investigate transient absorption of high harmonics in an attosecond pulse train by laser-dressed ...
We calculate the transient absorption of an isolated attosecond pulse (IAP) by helium atoms subject ...
In this work, a model for simulating electron dynamics in strong femtosecond-laser fields was develo...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
We study two-photon double ionization of helium in its ground state at sufficiently low laser intens...
We present transient absorption spectra of an extreme ultraviolet attosecond pulse train in helium d...
Using high-order harmonic attosecond pulse trains, we investigate the photoionization dynamics and t...
Electron dynamics in atoms and molecules occurs on a time-scale of attoseconds (10⁻¹⁸s). With the av...
We present experimental results and a theoretical framework for understanding the ionization dynamic...
When small quantum systems, atoms or molecules, absorb a high-energy photon, electrons are emitted w...
Helium atoms in the presence of extreme ultraviolet light pulses can lose electrons through direct p...
Quantum mechanical motion of electrons in atoms and molecules is at the heart of many photophysical ...
Helium atoms in the presence of extreme ultraviolet light pulses can lose electrons through direct p...
When high intensity laser light is focused into a gaseous target, high energy photons can be produce...
Ultrafast atomic processes, such as excitation and ionization occurring on the femtosecond or shorte...
We investigate transient absorption of high harmonics in an attosecond pulse train by laser-dressed ...
We calculate the transient absorption of an isolated attosecond pulse (IAP) by helium atoms subject ...
In this work, a model for simulating electron dynamics in strong femtosecond-laser fields was develo...
This thesis deals with ultrafast dynamics of electronic processes in rare gas atoms. The processes w...
We study two-photon double ionization of helium in its ground state at sufficiently low laser intens...
We present transient absorption spectra of an extreme ultraviolet attosecond pulse train in helium d...