Some of us have recently reported (Viteau et al 2008 Science 321 232-4) vibrational cooling of translationally cold Cs(2) molecules into the lowest vibrational level v = 0 of the singlet X(1)Sigma(g) ground electronic state. Starting from a sample of cold molecules produced in a collection of vibrational levels of the ground state, our method was based on repeated optical pumping by laser light with a spectrum broad enough to excite all populated vibrational levels but frequency-limited in such a way to eliminate transitions from v = 0 level, in which molecules accumulate. In this paper, this method is generalized to accumulate molecules into an arbitrary selected 'target' vibrational level. It is implemented by using ultrashort pulse shapi...
Beaucoup d’expériences et d’applications utilisant des molécules froides nécessitent d’avoir un écha...
is special in two regards. First, it uses ultrafast laser pulses that are spectrally broad enough to...
Ultracold molecular gases are promising as an avenue to rich many-body physics, quantum chemistry, q...
Abstract. Some of us have recently reported in Science [1] vibrational cooling of translationally co...
The methods producing cold molecules from cold atoms tend to leave molecular ensembles with substant...
The use of a broadband, frequency shaped femtosecond laser on translationally cold cesium molecules ...
SUMMARY The methods producing cold molecules from cold atoms tend to leave molecular ensembles wit...
A review of our recent experiments on broadband vibrational cooling of cold cesium molecules and of ...
Many experiments and applications using cold molecules need to have a sample of molecules cold in al...
SUMMARY We have recently demonstrated that optical pumping methods combined with photoassociation o...
The development of the field of the science of ultra-cold matter has opened some exciting possibilit...
We demonstrate selective vibrational population transfer in cold cesium dimers using a simple approa...
Recent experiments on formation of translationally cold ground state molecules, their subsequent bro...
We demonstrate rotational and vibrational cooling of cesium dimers by optical pumping techniques. We...
SUMMARY We demonstrate rotational and vibrational cooling of cesium dimers by optical pumping techn...
Beaucoup d’expériences et d’applications utilisant des molécules froides nécessitent d’avoir un écha...
is special in two regards. First, it uses ultrafast laser pulses that are spectrally broad enough to...
Ultracold molecular gases are promising as an avenue to rich many-body physics, quantum chemistry, q...
Abstract. Some of us have recently reported in Science [1] vibrational cooling of translationally co...
The methods producing cold molecules from cold atoms tend to leave molecular ensembles with substant...
The use of a broadband, frequency shaped femtosecond laser on translationally cold cesium molecules ...
SUMMARY The methods producing cold molecules from cold atoms tend to leave molecular ensembles wit...
A review of our recent experiments on broadband vibrational cooling of cold cesium molecules and of ...
Many experiments and applications using cold molecules need to have a sample of molecules cold in al...
SUMMARY We have recently demonstrated that optical pumping methods combined with photoassociation o...
The development of the field of the science of ultra-cold matter has opened some exciting possibilit...
We demonstrate selective vibrational population transfer in cold cesium dimers using a simple approa...
Recent experiments on formation of translationally cold ground state molecules, their subsequent bro...
We demonstrate rotational and vibrational cooling of cesium dimers by optical pumping techniques. We...
SUMMARY We demonstrate rotational and vibrational cooling of cesium dimers by optical pumping techn...
Beaucoup d’expériences et d’applications utilisant des molécules froides nécessitent d’avoir un écha...
is special in two regards. First, it uses ultrafast laser pulses that are spectrally broad enough to...
Ultracold molecular gases are promising as an avenue to rich many-body physics, quantum chemistry, q...