Department of Physics and Research Center OPTIMAS, Technical University Kaiserslautern, D-67663 Kaiserslautern, Germany.
Phys Rev Lett. 2013 Mar 8;110(10):100406. doi: 10.1103/PhysRevLett.110.100406. Epub 2013 Mar 7.
We study thermalization in a one-dimensional quantum system consisting of a noninteracting fermionic chain with each site of the chain coupled to an additional bath site. Using a density matrix renormalization group algorithm we investigate the time evolution of the observables in the chain after a quantum quench. For low densities we show that the intermediate time dynamics can be quantitatively described by a system of coupled equations of motion. For higher densities our numerical results show a prethermalization for the local observables at intermediate times and a full thermalization to the grand canonical ensemble at long times. For the case of a weak bath-chain coupling we find, in particular, a Fermi momentum distribution in the chain in equilibrium in spite of the seemingly oversimplified bath in our model.
我们研究了由非相互作用的费米子链组成的一维量子系统中的热化现象,其中链的每个位置都与额外的浴位置耦合。使用密度矩阵重整化群算法,我们研究了量子淬火后链中可观测量的时间演化。对于低密度,我们表明中间时间动力学可以通过一组耦合的运动方程定量描述。对于较高密度,我们的数值结果表明中间时间局部可观测量存在预热化,而长时间则完全热化到广延系。对于弱浴-链耦合的情况,我们发现,特别是在我们的模型中尽管浴似乎过于简化,但链中仍存在平衡时的费米动量分布。