activity
20032009
most citedStructure formation during the collapse of a dipolar atomic Bose-Einstein condensate

78 citations · 206 across the 5 of their papers we have counts for

collaborators

10 papers

cond-mat.quant-gas200923 cited

Numerical method for evolving the dipolar projected Gross-Pitaevskii equation

P. B. Blakie, C. Ticknor, A. S. Bradley +3

We describe a method for evolving the projected Gross-Pitaevskii equation (PGPE) for an interacting Bose gas in a harmonic oscillator potential, with the inclusion of a long-range…

cond-mat.other200878 cited

Structure formation during the collapse of a dipolar atomic Bose-Einstein condensate

N. G. Parker, C. Ticknor, A. M. Martin +1

We investigate the collapse of a trapped dipolar Bose-Einstein condensate. This is performed by numerical simulations of the Gross-Pitaevskii equation and the novel application of…

cond-mat.other200836 cited

Collapse times of dipolar Bose-Einstein condensates

C. Ticknor, N. G. Parker, A. Melatos +3

We investigate the time taken for global collapse by a dipolar Bose-Einstein condensate. Two semi-analytical approaches and exact numerical integration of the mean-field dynamics a…

physics.atom-ph200747 cited

Collisional Control of Ground State Polar Molecules and Universal Dipolar Scattering

Christopher Ticknor

We explore the impact of the short range interaction on the scattering of ground state polar molecules, and study the transition from a weak to strong dipolar scattering over an ex…

physics.atom-ph200722 cited

Energy Dependence of Scattering Ground State Polar Molecules

Christopher Ticknor

We explore the total cross section of ground state polar molecules in an electric field at various energies, focusing on RbCs and RbK. An external electric field polarizes the mole…

physics.atom-ph2005

Production of cold formaldehyde molecules for study and control of chemical reaction dynamics with hydroxyl radicals

Eric R. Hudson, Christopher Ticknor, Brian C. Sawyer +5

We propose a method for controlling a class of low temperature chemical reactions. Specifically, we show the hydrogen abstraction channel in the reaction of formaldehyde (HCO…