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Integrability-Protected Adiabatic Reversibility in Quantum Spin Chains

机译:Quantum旋转链中可接受的可接受性保护的绝热可逆性

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摘要

We consider the out-of-equilibrium dynamics of the Heisenberg anisotropic quantum spin-1/2 chain threaded by a time-dependent magnetic flux. In the spirit of the recently developed generalized hydrodynamics (GHD), we exploit the integrability of the model for any flux values to derive an exact description of the dynamics in the limit of slowly varying flux: the state of the system is described at any time by a time-dependent generalized Gibbs ensemble. Two dynamical regimes emerge according to the value of the anisotropy Delta. For vertical bar Delta vertical bar 1, reversibility is preserved: the initial state is always recovered whenever the flux is brought back to zero. On the contrary, for vertical bar Delta vertical bar 1, instabilities of quasiparticles produce irreversible dynamics as confirmed by the dramatic growth of entanglement entropy. In this regime, the standard GHD description becomes incomplete and we complement it via a maximum entropy production principle. We test our predictions against numerical simulations finding excellent agreement.
机译:我们考虑Heisenberg各向异性量子旋转型1/2链的均衡动力学通过时间依赖性磁通量螺纹。本着最近开发的广义流体动力学(GHD)的精神,我们利用模型的可积分对于任何磁通值,以导出缓慢变化的通量极限的动态描述的精确描述:随时描述系统的状态通过时间依赖的广义gibbs合奏。两个动态制度根据各向异性三角洲的价值出现。对于垂直条Δ立式杆> 1,保留可逆性:只要通量恢复为零,始终恢复初始状态。相反,对于垂直条Δ垂直条<1,QuasiPally的稳定性产生不可逆的动态,通过缠结熵的显着生长确认。在这一制度中,标准的GHD描述变得不完整,我们通过最大的熵生产原理补充它。我们测试我们的预测,针对数值模拟寻找良好的协议。

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  • 来源
    《Physical review letters》 |2019年第24期|240606.1-240606.7|共7页
  • 作者单位

    Univ Amsterdam Inst Theoret Phys Sci Pk 904 NL-1098 XH Amsterdam Netherlands;

    Univ Oxford Rudolf Peierls Ctr Theoret Phys Oxford OX1 3NP England;

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