Panfil Miłosz, De Nardis Jacopo, Caux Jean-Sébastien
Institute for Theoretical Physics, University of Amsterdam, Science Park 904, Postbus 94485, 1090 GL Amsterdam, The Netherlands.
Phys Rev Lett. 2013 Mar 22;110(12):125302. doi: 10.1103/PhysRevLett.110.125302. Epub 2013 Mar 20.
We consider a 1D Bose gas with attractive interactions in a highly excited state containing no bound states. We show that in this so-called super Tonks-Girardeau gas, relaxation processes are suppressed, making the system metastable over long time scales. We compute dynamical correlation functions, revealing the structure of excitations, an enhancement of umklapp correlations and new branches due to intermediate bound states. These features give a clear signature of the super Tonks-Girardeau regime and can be used to experimentally identify it. We demonstrate that, despite its off-equilibrium nature, the system displays critical behavior: correlation functions are characterized by asymptotic power-law decay described by the Luttinger liquid framework.
我们考虑一维具有吸引相互作用的玻色气体,其处于不含束缚态的高激发态。我们表明,在这种所谓的超汤克斯 - 吉拉尔代奥气体中,弛豫过程受到抑制,使得系统在长时间尺度上呈亚稳态。我们计算了动态关联函数,揭示了激发的结构、乌姆klapp关联的增强以及由于中间束缚态产生的新分支。这些特征给出了超汤克斯 - 吉拉尔代奥 regime 的清晰特征,可用于通过实验识别它。我们证明,尽管该系统具有非平衡性质,但它表现出临界行为:关联函数的特征是由卢廷格液体框架描述的渐近幂律衰减。