The photoassociation process shows strong dependence on the temporal duration of the electromagnetic field pulses and their frequencies. This dependence is investigated using quantum mechanical simulations that include all ranges of impact parameters and also contributions from bound-to-bound transitions. The photoassociation yield of mercury atoms to produce excimer dimers is enhanced for short (ps) and for ultrashort (fs) pulse durations. Ultrashort laser pulses effectively overlap the entire range of free-to-bound transition, therefore achieving a maximum probability. Short pulses show a maximum in the photoassociation yield when their carrier frequency overlaps a particular free-to-bound spectroscopic resonance. Implications of these ca...
The establishment of robust laser-cooling techniques for the formation of ultracold atoms has provid...
Highly excited (Rydberg) states in Hg(,2) molecules were populated by two successive laser pulses, a...
Controlling laser-molecule interactions has become an integral part of developing devices and applic...
A quantum dynamical wave packet description of photoassociation reactions induced by short laser pul...
The quantum dynamics of photoassociative collisions O(3P)+H( 2S) controlled by picosecond laser puls...
AbstractThis work explores the optimization of laser pulses for the control of photoassociation and ...
We experimentally investigate various processes present in the photoassociative interaction of an ul...
In ultrafast molecular sciences, short laser pulses are used to initiate and interrogate chemical an...
18 pags., 3 figs.,The combination of time-dependent density functional theory and quantum optimal co...
Quantum coherent control of ultrafast bond making and the subsequent molecular dynamics is crucial f...
Coherent control extends the study of photochemical reactions from observation to active control of ...
A quantum dynamical description of an atomic collision pair interacting with the electric field of a...
Recent advances in laser technology have led to the generation of attosecond laser pulses, whose dur...
We present results on the effects of nanosecond-timescale frequency-chirped laser light on the forma...
The method femtosecond photoassociation spectroscopy (FPAS) is introduced and we report on its appli...
The establishment of robust laser-cooling techniques for the formation of ultracold atoms has provid...
Highly excited (Rydberg) states in Hg(,2) molecules were populated by two successive laser pulses, a...
Controlling laser-molecule interactions has become an integral part of developing devices and applic...
A quantum dynamical wave packet description of photoassociation reactions induced by short laser pul...
The quantum dynamics of photoassociative collisions O(3P)+H( 2S) controlled by picosecond laser puls...
AbstractThis work explores the optimization of laser pulses for the control of photoassociation and ...
We experimentally investigate various processes present in the photoassociative interaction of an ul...
In ultrafast molecular sciences, short laser pulses are used to initiate and interrogate chemical an...
18 pags., 3 figs.,The combination of time-dependent density functional theory and quantum optimal co...
Quantum coherent control of ultrafast bond making and the subsequent molecular dynamics is crucial f...
Coherent control extends the study of photochemical reactions from observation to active control of ...
A quantum dynamical description of an atomic collision pair interacting with the electric field of a...
Recent advances in laser technology have led to the generation of attosecond laser pulses, whose dur...
We present results on the effects of nanosecond-timescale frequency-chirped laser light on the forma...
The method femtosecond photoassociation spectroscopy (FPAS) is introduced and we report on its appli...
The establishment of robust laser-cooling techniques for the formation of ultracold atoms has provid...
Highly excited (Rydberg) states in Hg(,2) molecules were populated by two successive laser pulses, a...
Controlling laser-molecule interactions has become an integral part of developing devices and applic...