arXiv:1212.4645·v1·Quantum Gases
Prethermalization Revealed by the Relaxation Dynamics of Full Distribution Functions
David Adu Smith · Michael Gring · Tim Langen · Maximilian Kuhnert · Bernhard Rauer · Remi Geiger · Takuya Kitagawa🇺🇸 · Igor Mazets🇷🇺 · Eugene Demler🇺🇸 · Jörg Schmiedmayer
Abstract
We detail the experimental observation of the non-equilibrium many-body phenomenon prethermalization. We study the dynamics of a rapidly and coherently split one-dimensional Bose gas. An analysis based on the use of full quantum mechanical probability distributions of matter wave interference contrast reveals that the system evolves towards a quasi-steady state. This state, which can be characterized by an effective temperature, is not the final thermal equilibrium state. We compare the evolution of the system to an integrable Tomonaga-Luttinger liquid model and show that the system dephases to a prethermalized state rather than undergoing thermalization towards a final thermal equilibrium state.
Comments: Submitted to NJP for the focus issue on Out-of-Equilibrium Dynamics in Strongly Interacting One-Dimensional Systems