Tian T, Yang H-X, Qiu L-Y, Liang H-Y, Yang Y-B, Xu Y, Duan L-M
Center for Quantum Information, IIIS, Tsinghua University, Beijing 100084, People's Republic of China.
Phys Rev Lett. 2020 Jan 31;124(4):043001. doi: 10.1103/PhysRevLett.124.043001.
Dynamical quantum phase transitions are closely related to equilibrium quantum phase transitions for ground states. Here, we report an experimental observation of a dynamical quantum phase transition in a spinor condensate with correspondence in an excited state phase diagram, instead of the ground state one. We observe that the quench dynamics exhibits a nonanalytical change with respect to a parameter in the final Hamiltonian in the absence of a corresponding phase transition for the ground state there. We make a connection between this singular point and a phase transition point for the highest energy level in a subspace with zero spin magnetization of a Hamiltonian. We further show the existence of dynamical phase transitions for finite magnetization corresponding to the phase transition of the highest energy level in the subspace with the same magnetization. Our results open a door for using dynamical phase transitions as a tool to probe physics at higher energy eigenlevels of many-body Hamiltonians.
动力学量子相变与基态的平衡量子相变密切相关。在此,我们报告了在旋量凝聚体中对动力学量子相变的实验观测,该相变对应于激发态相图而非基态相图。我们观察到,在不存在相应基态相变的情况下,猝灭动力学相对于最终哈密顿量中的一个参数呈现出非解析变化。我们将这个奇点与哈密顿量零自旋磁化子空间中最高能级的相变点联系起来。我们进一步表明,对于具有相同磁化强度的子空间中最高能级的相变,存在对应于有限磁化强度的动力学相变。我们的结果为利用动力学相变作为探测多体哈密顿量更高能量本征能级物理性质的工具打开了一扇门。