Abstract
We study the transition from the collisionless to the hydrodynamic regime in a two-component spin-polarized mixture of 40K atoms by exciting its dipolar oscillation modes inside harmonic traps. The time evolution of the mixture is described by the VlasovLandau equations and numerically solved with a fully three-dimensional concurrent code. We observe a master/slave behaviour of the oscillation frequencies depending on the dipolar mode that is excited. Regardless of the initial conditions, the transition to hydrodynamics is found to shift to lower values of the collision rate as the temperature decreases.
Anno
2004
Autori IAC
Tipo pubblicazione
Altri Autori
Toschi F., Capuzzi P., Succi S., Vignolo P., Tosi M.P.
Editore
IOP Publishing.
Rivista
Journal of physics. B, Atomic, molecular and optical physics (Online)