International audienceWe consider a diatomic molecule driven by a linearly polarized laser pulse with a polarization axis rotating with a constant acceleration. This setup is referred to as optical centrifuge, and it is known to lead to high-angular momenta for the molecule (superrotor states) and, possibly, to dissociation. Here we elucidate the dynamical mechanisms behind the creation of superrotor states and their dissociation. We unravel the role of the various parameters of the laser field in these processes by considering reduced Hamiltonian models encapsulating the different phases in the creation of superrotor states, possibly leading to dissociation
By means of quantum-dynamical and classical trajectory calculations of H2+ photodissociation in stro...
In the work presented here, an ultrafast, angularly accelerating optical trap, called an optical cen...
International audienceWe discuss the influence of periodic orbits on the dissociation of a diatomic ...
International audienceWe consider a diatomic molecule driven by a linearly polarized laser pulse wit...
Modern femtosecond technology can be used to create laser pulses that induce controlled spinning of ...
We perform a detailed quantum study of forced molecular rotation in an optical centrifuge, recently ...
Sophisticated optical methods provide some of the most promising tools for complete control of a mol...
Localized heating of a gas by intense laser pulses leads to interesting acoustic, hydrodynamic, and ...
The control of ultrafast molecular rotational motion has benefited from the development of innovativ...
International audienceWe investigate, both theoretically and experimentally, the mechanism behind th...
International audienceWe study the formation of the RbCs molecule by an intense laser pulse using no...
Covariance mapping is used to study the dissociation dynamics of highly-charged triatomic molecules ...
Author Institution: Department of Chemistry and Biochemistry, University of Maryland, College Park, ...
Author Institution: Department of Chemistry and Biochemistry, University of Maryland, College Park, ...
The major purpose of this work is the experimental study of the applicability of an optical centrifu...
By means of quantum-dynamical and classical trajectory calculations of H2+ photodissociation in stro...
In the work presented here, an ultrafast, angularly accelerating optical trap, called an optical cen...
International audienceWe discuss the influence of periodic orbits on the dissociation of a diatomic ...
International audienceWe consider a diatomic molecule driven by a linearly polarized laser pulse wit...
Modern femtosecond technology can be used to create laser pulses that induce controlled spinning of ...
We perform a detailed quantum study of forced molecular rotation in an optical centrifuge, recently ...
Sophisticated optical methods provide some of the most promising tools for complete control of a mol...
Localized heating of a gas by intense laser pulses leads to interesting acoustic, hydrodynamic, and ...
The control of ultrafast molecular rotational motion has benefited from the development of innovativ...
International audienceWe investigate, both theoretically and experimentally, the mechanism behind th...
International audienceWe study the formation of the RbCs molecule by an intense laser pulse using no...
Covariance mapping is used to study the dissociation dynamics of highly-charged triatomic molecules ...
Author Institution: Department of Chemistry and Biochemistry, University of Maryland, College Park, ...
Author Institution: Department of Chemistry and Biochemistry, University of Maryland, College Park, ...
The major purpose of this work is the experimental study of the applicability of an optical centrifu...
By means of quantum-dynamical and classical trajectory calculations of H2+ photodissociation in stro...
In the work presented here, an ultrafast, angularly accelerating optical trap, called an optical cen...
International audienceWe discuss the influence of periodic orbits on the dissociation of a diatomic ...