Energy-space random walk in a driven disordered Bose gas
Abstract
Motivated by the experimental observation [1] that driving a non-interacting Bose gas in a 3D box with weak disorder leads to power-law energy growth, with , and compressed-exponential momentum distributions that show dynamic scaling, we perform systematic numerical and analytical studies of this system. Schr\"odinger-equation simulations reveal a crossover from to with increasing disorder strength, hinting at the existence of two different dynamical regimes. We present a semi-classical model that captures the simulation results and allows an understanding of the dynamics in terms of an energy-space random walk, from which a crossover from to scaling is analytically obtained. The two limits correspond to the random walk being limited by the rate of the elastic disorder-induced scattering or the rate at which the drive can change the system's energy. Our results provide the theoretical foundation for further experiments.
Cite
@article{arxiv.2309.12308,
title = {Energy-space random walk in a driven disordered Bose gas},
author = {Yansheng Zhang and Gevorg Martirosyan and Christopher J. Ho and Jiří Etrych and Christoph Eigen and Zoran Hadzibabic},
journal= {arXiv preprint arXiv:2309.12308},
year = {2024}
}
Comments
Main text (7 pages, 6 figures), Appendices (7 pages, 1 figure)