arXiv · 2401.18003
Chaotic scattering in ultracold atom-ion collisions
Abstract
We report on signatures of classical chaos in ultracold collisions between a trapped ion and a free atom. Using numerical simulations, we show that the scattering dynamics can be highly sensitive to initial conditions for various mass ratios and trapping frequencies, indicating the onset of chaos. We quantify this chaotic dynamics by calculating its fractal dimension. We show that for a trapped $^{88}$Sr$^+$ ion and a free $^{87}$Rb atom chaotic dynamic appears under experimentally relevant conditions, and find its characteristic energy scale. The observation of classical chaos in atom-trapped-ion collisions suggests that signatures of quantum chaos might appear, for example, through a Wigner-Dyson distribution of collisional resonances.
Explore related subjects
Keep this discovery
Meirav Pinkas, Jonathan Wengrowicz, Nitzan Akerman, Roee Ozeri. 2024-01-31. Chaotic scattering in ultracold atom-ion collisions. https://arxiv.org/abs/2401.18003
Cite the original work for its findings. Save a collection to share your selection of sources.