doi:10.1088/1367-2630/11/5/055029 Abstract. This paper reports on calculations of collisional cross sections for the complexes X–C6H6 (X = 3He, 4He, Ne) at temperatures in the range 1µK–10K and shows that relatively large cross sections in the 103–105Å2 range are available for collisional cooling. Both elastic and inelastic processes are considered in this temperature range. The calculations suggest that sympathetically cooling benzene to microkelvin temperatures is feasible using these co-trapped rare gas atoms in an optical trap. Content
We calculate the interaction potential between N atoms and NH molecules and use it to investigate co...
We have developed a novel experimental technique for direct production of cold molecules using a com...
1) The thermal behaviour of the population transfer cross-sections induced in collisions between mer...
Quasiclassical trajectory calculations of the energy transfer of highly vibrationally excited benzen...
$^{1}$ S. Green. J. Chem. Phys. 82.4548 (1985). $^{2}$A. Palma and S. Green, J. Chem. Phys. 85, 1333...
Quantum dynamics of superelastic collisions involving vibrational levels of MgH+ (X-1 Sigma(+)) ions...
The preparation of cold molecules is of great importance in many contexts, such as fundamental physi...
Data used in preparation of the paper Modeling sympathetic cooling of molecules by ultracold atoms ...
We report on measurements of the collisional properties of a mixture of Cs-133 and Rb-87 atoms in a ...
Author Institution: Department of Physics, The Ohio State UniversityThe theory of molecule-atom coll...
We present a rigorous theoretical study of low-temperature collisions of polyatomic molecular radica...
Contains research objectives and reports on one research project.Joint Services Electronics Programs...
The development of techniques to cool/slow and trap atoms and molecules brought about a revolution i...
Collisions between electrostatically trapped molecules in the J=0 state are theoretically investigat...
We use the liquid micro-jet technique coupled with laser spectroscopy to measure the rotational and ...
We calculate the interaction potential between N atoms and NH molecules and use it to investigate co...
We have developed a novel experimental technique for direct production of cold molecules using a com...
1) The thermal behaviour of the population transfer cross-sections induced in collisions between mer...
Quasiclassical trajectory calculations of the energy transfer of highly vibrationally excited benzen...
$^{1}$ S. Green. J. Chem. Phys. 82.4548 (1985). $^{2}$A. Palma and S. Green, J. Chem. Phys. 85, 1333...
Quantum dynamics of superelastic collisions involving vibrational levels of MgH+ (X-1 Sigma(+)) ions...
The preparation of cold molecules is of great importance in many contexts, such as fundamental physi...
Data used in preparation of the paper Modeling sympathetic cooling of molecules by ultracold atoms ...
We report on measurements of the collisional properties of a mixture of Cs-133 and Rb-87 atoms in a ...
Author Institution: Department of Physics, The Ohio State UniversityThe theory of molecule-atom coll...
We present a rigorous theoretical study of low-temperature collisions of polyatomic molecular radica...
Contains research objectives and reports on one research project.Joint Services Electronics Programs...
The development of techniques to cool/slow and trap atoms and molecules brought about a revolution i...
Collisions between electrostatically trapped molecules in the J=0 state are theoretically investigat...
We use the liquid micro-jet technique coupled with laser spectroscopy to measure the rotational and ...
We calculate the interaction potential between N atoms and NH molecules and use it to investigate co...
We have developed a novel experimental technique for direct production of cold molecules using a com...
1) The thermal behaviour of the population transfer cross-sections induced in collisions between mer...