节点文献
Thermalization of one-dimensional classical lattices: beyond the weakly interacting regime
【摘要】 Thermalization in many-body systems, especially with strong interactions, is a central question in physics. In this work, we present a novel framework for the thermalization of interacting wave systems, distinguishing between trivial(no momentum exchange) and nontrivial interactions(significant energy redistribution). This distinction leads to a statistically equivalent model with weakened interactions. By applying this to FPUT-like models, we identify a unique double scaling of thermalization times. Crucially, our findings suggest the persistence of prethermalization in strong interactions.
【Abstract】 Thermalization in many-body systems, especially with strong interactions, is a central question in physics. In this work, we present a novel framework for the thermalization of interacting wave systems, distinguishing between trivial(no momentum exchange) and nontrivial interactions(significant energy redistribution). This distinction leads to a statistically equivalent model with weakened interactions. By applying this to FPUT-like models, we identify a unique double scaling of thermalization times. Crucially, our findings suggest the persistence of prethermalization in strong interactions.
【Key words】 thermalization; energy diffusion; lattice model; strong interaction; prethermalization; generalized Gibbs ensemble; multi-wave resonances;
- 【文献出处】 Communications in Theoretical Physics ,理论物理(英文版) , 编辑部邮箱 ,2024年11期
- 【分类号】O414
- 【下载频次】3