Floquet heating in interacting atomic gases with an oscillating force
Author(s)
Li, Jun-Ru; Shteynas, Boris; Ketterle, Wolfgang
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© 2019 American Physical Society. We theoretically investigate the collisional heating of a cold atom system subjected to time-periodic forces. We show within the Floquet framework that this heating rate due to two-body collisions has a general semiclassical expression P ρσvcolE0, depending on the kinetic energy E0 associated with the shaking, particle number density ρ, elastic collision cross section σ, and an effective collisional velocity vcol determined by the dominant energy scale in the system. We further show that the collisional heating is suppressed by Pauli blocking in cold fermionic systems and by the modified density of states in systems in lower dimensions. Our results provide an exactly solvable example and reveal some general features of Floquet heating in interacting systems.
Date issued
2019-09Department
Massachusetts Institute of Technology. Research Laboratory of Electronics; MIT-Harvard Center for Ultracold Atoms; Massachusetts Institute of Technology. Department of PhysicsJournal
Physical Review A
Publisher
American Physical Society (APS)
ISSN
2469-9926
2469-9934