We prove complete controllability for rotational states of an asymmetric top molecule belonging to degenerate values of the orientational quantum number M. Based on this insight, we construct a pulse sequence that energetically separates population initially distributed over degenerate M-states, as a precursor for orientational purification. Introducing the concept of enantio-selective controllability, we determine the conditions for complete enantiomer-specific population transfer in chiral molecules and construct pulse sequences realizing this transfer for population initially distributed over degenerate M-states. This degeneracy presently limits enantiomer-selectivity for any initial state except the rotational ground state. Our work t...
The enantiomers of a racemic photoresponsive material represent two distinct states that can be modu...
A novel approach for the state-specific enantiomeric enrichment and the spatial separation ofenantio...
We reveal the existence of polarizing quantum phases for the enantiomers of cold, interacting chiral...
21 pages, 7 figuresWe prove complete controllability for rotational states of an asymmetric top mole...
21 pages, 7 figuresInternational audienceWe prove complete controllability for rotational states of ...
Recent experiments have demonstrated highly enantioselective population transfer among rotational st...
Achiral molecules can be made temporarily chiral by excitation with electric fields, in the sense th...
We present a comprehensive study of enantioselective orientation of chiral molecules excited by a pa...
We here report on a quantitative study of Enantiomer-Specific State Transfer (ESST), performed in a ...
Achiral molecules can be made temporarily chiral by excitation with electric fields, in the sense th...
The enantiomers of a racemic photoresponsive material represent two distinct states that can be modu...
An interesting class of molecules is that in which the molecules do not possess a stereogenic center...
Microwave three-wave mixing allows for enantiomer-selective excitation of randomly oriented chiral m...
The enantiomers of a racemic photoresponsive material represent two distinct states that can be modu...
Over the last years, microwave three-wave mixing (M3WM) experiments have been shown to provide a sen...
The enantiomers of a racemic photoresponsive material represent two distinct states that can be modu...
A novel approach for the state-specific enantiomeric enrichment and the spatial separation ofenantio...
We reveal the existence of polarizing quantum phases for the enantiomers of cold, interacting chiral...
21 pages, 7 figuresWe prove complete controllability for rotational states of an asymmetric top mole...
21 pages, 7 figuresInternational audienceWe prove complete controllability for rotational states of ...
Recent experiments have demonstrated highly enantioselective population transfer among rotational st...
Achiral molecules can be made temporarily chiral by excitation with electric fields, in the sense th...
We present a comprehensive study of enantioselective orientation of chiral molecules excited by a pa...
We here report on a quantitative study of Enantiomer-Specific State Transfer (ESST), performed in a ...
Achiral molecules can be made temporarily chiral by excitation with electric fields, in the sense th...
The enantiomers of a racemic photoresponsive material represent two distinct states that can be modu...
An interesting class of molecules is that in which the molecules do not possess a stereogenic center...
Microwave three-wave mixing allows for enantiomer-selective excitation of randomly oriented chiral m...
The enantiomers of a racemic photoresponsive material represent two distinct states that can be modu...
Over the last years, microwave three-wave mixing (M3WM) experiments have been shown to provide a sen...
The enantiomers of a racemic photoresponsive material represent two distinct states that can be modu...
A novel approach for the state-specific enantiomeric enrichment and the spatial separation ofenantio...
We reveal the existence of polarizing quantum phases for the enantiomers of cold, interacting chiral...