We investigate the dissociation dynamics of diatomic molecules subjected to both a femtosecond infrared (IR) laser pulse and a femtosecond pulse train (FPT) within the framework of the Morse potential model. When the IR and FPT are phase delayed, we observe well-resolved oscillations in dissociation probability, corresponding to multiple integers of the IR period, exhibiting enhancement and suppression of bond dissociation. These oscillations reveal a rich dynamics as a function of the IR and FPT parameters including chaotic fields. A frequency-resolved profile of dressed molecular states shows that these oscillations are due to interference of many quantum paths analogous to the recently observed control of photoionization of atoms under I...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We investigate the dissociation dynamics of diatomic molecules subjected to both a femtosecond infra...
The dissociation dynamics of heteronuclear diatomic molecules induced by infrared laser pulses is in...
Dissociation probabilities and populations of excited vibrational states are calculated numerically ...
International audienceWe discuss the influence of periodic orbits on the dissociation of a diatomic ...
Using quantum mechanics calculations, we theoretically study the dissociation and ionization dynamic...
We present a combined theoretical and experimental study of ultrafast wave-packet dynamics in the di...
In this work we investigate the dissociation of heteronuclear diatomic molecules subjected to laser ...
The study of laser molecular interactions continues to be a highly exciting and significant field of...
We used ultrashort femtosecond vacuum ultraviolet (VUV) and infrared (IR) pulses in a pump-probe sch...
We used ultrashort femtosecond vacuum ultraviolet (VUV) and infrared (IR) pulses in a pump-probe sch...
We present a kinematically complete and time-resolved study of the dissociation dynamics of H 2 + us...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We investigate the dissociation dynamics of diatomic molecules subjected to both a femtosecond infra...
The dissociation dynamics of heteronuclear diatomic molecules induced by infrared laser pulses is in...
Dissociation probabilities and populations of excited vibrational states are calculated numerically ...
International audienceWe discuss the influence of periodic orbits on the dissociation of a diatomic ...
Using quantum mechanics calculations, we theoretically study the dissociation and ionization dynamic...
We present a combined theoretical and experimental study of ultrafast wave-packet dynamics in the di...
In this work we investigate the dissociation of heteronuclear diatomic molecules subjected to laser ...
The study of laser molecular interactions continues to be a highly exciting and significant field of...
We used ultrashort femtosecond vacuum ultraviolet (VUV) and infrared (IR) pulses in a pump-probe sch...
We used ultrashort femtosecond vacuum ultraviolet (VUV) and infrared (IR) pulses in a pump-probe sch...
We present a kinematically complete and time-resolved study of the dissociation dynamics of H 2 + us...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...
We demonstrate that dissociative ionization of O 2 can be controlled by the relative delay between a...