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首页> 外文期刊>Physical review >Quantum quench spectroscopy of a Luttinger liquid: Ultrarelativistic density wave dynamics due to fractionalization in an X X Z chain
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Quantum quench spectroscopy of a Luttinger liquid: Ultrarelativistic density wave dynamics due to fractionalization in an X X Z chain

机译:Luttinger液体的量子猝灭光谱:X X Z链中的分馏作用引起的超相对论密度波动力学

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We compute the dynamics of localized excitations produced by a quantum quench in the spin-1/2 XXZ chain. Using numerics combining the density-matrix renormalization group and exact time evolution, as well as analytical arguments, we show that fractionalization due to interactions in the prequench state gives rise to "ultrarelativistic" density waves that travel at the maximum band velocity. The system is initially prepared in the ground state of the chain within the gapless XY phase, which admits a Luttinger liquid (LL) description at low energies and long wavelengths. The Hamiltonian is then suddenly quenched to a band insulator, after which the chain evolves unitarily. Through the gapped dispersion of the insulator spectrum, the postquench dynamics serve as a "velocity microscope," revealing initial-state particle correlations via space-time density propagation. We show that the ultrarelativistic wave production is tied to the particular way in which fractionalization evades Pauli blocking in the zero-temperature initial LL state.
机译:我们计算了自旋1/2 XXZ链中的量子猝灭产生的局部激发的动力学。使用将密度矩阵重新归一化组和精确的时间演化以及解析参数组合在一起的数值,我们表明由于在猝灭前状态下的相互作用而导致的分数化会产生以最大带速传播的“超相对论性”密度波。该系统最初是在无间隙XY相内以链的基态制备的,这允许在低能量和长波长下使用Luttinger液体(LL)进行描述。然后,哈密顿量突然骤冷为带绝缘子,此后,链整体演化。通过绝缘子频谱的间隙分散,猝灭后动力学充当“速度显微镜”,通过时空密度传播揭示初始状态的粒子相关性。我们表明,超相对论波的产生与在零温度初始LL状态下分馏规避Pauli阻塞的特定方式有关。

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