The vibrational motion of molecules represents a fundamental example of an anharmonic oscillator. Using a prototype molecular system, HeH+, we demonstrate that appropriate laser pulses make it possible to drive the nuclear motion in the anharmonic potential of the electronic ground state, increasing its energy above the potential barrier and facilitating dissociation by purely vibrational excitation. We find excellent agreement between the frequency-dependent response of the helium hydride molecular cation to both classical and quantum mechanical simulations, thus removing any ambiguities through electronic excitation. Our results provide access to the rich dynamics of anharmonic quantum oscillator systems and pave the way to state-selectiv...
We show that weakly-bound molecules can be probed by "shaking" in a pulsed nonresonant laser field. ...
The concerted interplay between reactive nuclear and electronic motions in molecules actuates chemis...
My Ph. D. studies can be divided in three main areas: quantum dynamics, intramolecular vibrational e...
The molecular hydrogen ion has been an enormously well studied molecule. Yet, despite its simplicity...
In this work, we first aim to realize the high harmonic generation(HHG) spectrum in a classical and q...
AbstractThis work explores the optimization of laser pulses for the control of photoassociation and ...
The fragmentation dynamics of H2+ molecular ions in intense laser fields is investigated by means of...
Using quantum mechanics calculations, we theoretically study the dissociation and ionization dynamic...
In this thesis, I studied theoretically atoms and molecules interacting with a short, low-frequency ...
Ultrafast state-selective dynamics of diatomic molecules in the electronic ground state under the co...
We present a kinematically complete and time-resolved study of the dissociation dynamics of H 2 + us...
We present studies of the generation, observation and manipulation of vibrational coherence with ult...
This thesis investigates how atoms and molecules behave once a coherent electronic dynamics is excit...
To fully understand atomic and molecular dynamics scientists must be able to probe and study dynamic...
Laser control on the generations of the molecular high-order harmonic generation (MHHG) and the isol...
We show that weakly-bound molecules can be probed by "shaking" in a pulsed nonresonant laser field. ...
The concerted interplay between reactive nuclear and electronic motions in molecules actuates chemis...
My Ph. D. studies can be divided in three main areas: quantum dynamics, intramolecular vibrational e...
The molecular hydrogen ion has been an enormously well studied molecule. Yet, despite its simplicity...
In this work, we first aim to realize the high harmonic generation(HHG) spectrum in a classical and q...
AbstractThis work explores the optimization of laser pulses for the control of photoassociation and ...
The fragmentation dynamics of H2+ molecular ions in intense laser fields is investigated by means of...
Using quantum mechanics calculations, we theoretically study the dissociation and ionization dynamic...
In this thesis, I studied theoretically atoms and molecules interacting with a short, low-frequency ...
Ultrafast state-selective dynamics of diatomic molecules in the electronic ground state under the co...
We present a kinematically complete and time-resolved study of the dissociation dynamics of H 2 + us...
We present studies of the generation, observation and manipulation of vibrational coherence with ult...
This thesis investigates how atoms and molecules behave once a coherent electronic dynamics is excit...
To fully understand atomic and molecular dynamics scientists must be able to probe and study dynamic...
Laser control on the generations of the molecular high-order harmonic generation (MHHG) and the isol...
We show that weakly-bound molecules can be probed by "shaking" in a pulsed nonresonant laser field. ...
The concerted interplay between reactive nuclear and electronic motions in molecules actuates chemis...
My Ph. D. studies can be divided in three main areas: quantum dynamics, intramolecular vibrational e...