Controlling interactions between cold molecules using external fields can elucidate the role of quantum mechanics in molecular collisions. We create a new experimental platform in which ultracold rubidium atoms and cold ammonia molecules are separately trapped by magnetic and electric fields and then combined to study collisions. We observe inelastic processes that are faster than expected from earlier field-free calculations. We use quantum scattering calculations to show that electric fields can have a major effect on collision outcomes, even in the absence of dipole-dipole interactions
Contains fulltext : 19162_deceantro.pdf (publisher's version ) (Open Access)What w...
We explore the potential energy surfaces for NH molecules interacting with alkali-metal and alkaline...
Contains fulltext : 29874.pdf (publisher's version ) (Open Access)Cold molecules a...
We calculate the interaction potential between N atoms and NH molecules and use it to investigate co...
We present quantum-theoretical studies of collisions between an open-shell S-state atom and a 2Π-sta...
We show that low-energy inelastic cross sections can decrease as well as increase in the vicinity of...
We study inelastic collisions between CaF molecules and 87Rb atoms in a dual-species magneto-optical...
We consider how trapped molecules can be sympathetically cooled by ultracold atoms. As a prototypica...
We compute ab initio cross sections for cold collisions of Rb atoms with OH radicals. We predict col...
Full control of molecular interactions, including reactive losses, would open new frontiers in quant...
This thesis describes the effect of an electric field on the interaction between rubidium and ammoni...
Multichannel quantum defect theory (MQDT) is shown to be capable of producing quantitatively accurat...
The development of techniques to cool/slow and trap atoms and molecules brought about a revolution i...
The development of techniques to cool/slow and trap atoms and molecules brought about a revolution i...
The development of techniques to cool/slow and trap atoms and molecules brought about a revolution i...
Contains fulltext : 19162_deceantro.pdf (publisher's version ) (Open Access)What w...
We explore the potential energy surfaces for NH molecules interacting with alkali-metal and alkaline...
Contains fulltext : 29874.pdf (publisher's version ) (Open Access)Cold molecules a...
We calculate the interaction potential between N atoms and NH molecules and use it to investigate co...
We present quantum-theoretical studies of collisions between an open-shell S-state atom and a 2Π-sta...
We show that low-energy inelastic cross sections can decrease as well as increase in the vicinity of...
We study inelastic collisions between CaF molecules and 87Rb atoms in a dual-species magneto-optical...
We consider how trapped molecules can be sympathetically cooled by ultracold atoms. As a prototypica...
We compute ab initio cross sections for cold collisions of Rb atoms with OH radicals. We predict col...
Full control of molecular interactions, including reactive losses, would open new frontiers in quant...
This thesis describes the effect of an electric field on the interaction between rubidium and ammoni...
Multichannel quantum defect theory (MQDT) is shown to be capable of producing quantitatively accurat...
The development of techniques to cool/slow and trap atoms and molecules brought about a revolution i...
The development of techniques to cool/slow and trap atoms and molecules brought about a revolution i...
The development of techniques to cool/slow and trap atoms and molecules brought about a revolution i...
Contains fulltext : 19162_deceantro.pdf (publisher's version ) (Open Access)What w...
We explore the potential energy surfaces for NH molecules interacting with alkali-metal and alkaline...
Contains fulltext : 29874.pdf (publisher's version ) (Open Access)Cold molecules a...