The angular momentum of molecules, or, equivalently, their rotation in three-dimensional space, is ideally suited for quantum control. Molecular angular momentum is naturally quantized, time evolution is governed by a well-known Hamiltonian with only a few accurately known parameters, and transitions between rotational levels can be driven by external fields from various parts of the electromagnetic spectrum. Control over the rotational motion can be exerted in one-, two-, and many-body scenarios, thereby allowing one to probe Anderson localization, target stereoselectivity of bimolecular reactions, or encode quantum information to name just a few examples. The corresponding approaches to quantum control are pursued within separate, and typ...
The behavior of molecules subject to strong laser fields has been arapidly growing topic in molecula...
The design of efficient and robust pulse sequences is a fundamental requirement in quantum control. ...
The control of ultrafast molecular rotational motion has benefited from the development of innovativ...
The angular momentum of molecules, or, equivalently, their rotation in three-dimensional space, is i...
We computationally demonstrate a new method for coherently controlling the rotation-axis direction i...
The design of efficient and robust pulse sequences is a fundamental requirement in quantum control. ...
A rigorous quantum description of molecular dynamics with a particular emphasis on internal observab...
Paper n°105303In this work we analyze the quantum controllability of rotational motion under the inf...
A rigorous quantum description of molecular dynamics with a particular emphasis on internal observab...
International audienceThe design of efficient and robust pulse sequences is a fundamental requiremen...
International audienceThe design of efficient and robust pulse sequences is a fundamental requiremen...
International audienceThe design of efficient and robust pulse sequences is a fundamental requiremen...
International audienceThe design of efficient and robust pulse sequences is a fundamental requiremen...
The behavior of molecules subject to strong laser fields has been arapidly growing topic in molecula...
The design of efficient and robust pulse sequences is a fundamental requirement in quantum control. ...
The behavior of molecules subject to strong laser fields has been arapidly growing topic in molecula...
The design of efficient and robust pulse sequences is a fundamental requirement in quantum control. ...
The control of ultrafast molecular rotational motion has benefited from the development of innovativ...
The angular momentum of molecules, or, equivalently, their rotation in three-dimensional space, is i...
We computationally demonstrate a new method for coherently controlling the rotation-axis direction i...
The design of efficient and robust pulse sequences is a fundamental requirement in quantum control. ...
A rigorous quantum description of molecular dynamics with a particular emphasis on internal observab...
Paper n°105303In this work we analyze the quantum controllability of rotational motion under the inf...
A rigorous quantum description of molecular dynamics with a particular emphasis on internal observab...
International audienceThe design of efficient and robust pulse sequences is a fundamental requiremen...
International audienceThe design of efficient and robust pulse sequences is a fundamental requiremen...
International audienceThe design of efficient and robust pulse sequences is a fundamental requiremen...
International audienceThe design of efficient and robust pulse sequences is a fundamental requiremen...
The behavior of molecules subject to strong laser fields has been arapidly growing topic in molecula...
The design of efficient and robust pulse sequences is a fundamental requirement in quantum control. ...
The behavior of molecules subject to strong laser fields has been arapidly growing topic in molecula...
The design of efficient and robust pulse sequences is a fundamental requirement in quantum control. ...
The control of ultrafast molecular rotational motion has benefited from the development of innovativ...