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首页> 外文期刊>Physical Review. B, Condensed Matter >Uncovering nonperturbative dynamics of the biased sub-Ohmic spin-boson model with variational matrix product states
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Uncovering nonperturbative dynamics of the biased sub-Ohmic spin-boson model with variational matrix product states

机译:用变分矩阵产品状态揭示偏置亚欧姆旋转玻色子模型的非触发动态

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摘要

We study the dynamics of the biased sub-Ohmic spin-boson model by means of a time-dependent variational matrix product state (TDVMPS) algorithm. The evolution of both the system and the environment is obtained in the weak- and the strong-coupling regimes, respectively characterized by damped spin oscillations and by a nonequilibrium process where the spin freezes near its initial state, which are explicitly shown to arise from a variety of reactive environmental quantum dynamics. We also explore the rich phenomenology of the intermediate-coupling case, a nonperturbative regime where the system shows a complex dynamical behavior, combining features of both the weakly and the strongly coupled case in a sequential, time-retarded fashion. Our work demonstrates the potential of TDVMPS methods for exploring otherwise elusive, nonperturbative regimes of complex open quantum systems, and points to the possibilities of exploiting the qualitative, real-time modification of quantum properties induced by nonequilibrium bath dynamics in ultrafast transient processes.
机译:我们通过时间依赖性变分矩阵产品状态(TDVMPS)算法研究偏置亚欧姆自旋 - 玻色子模型的动态。系统和环境的演变是在弱和强耦合的方案中获得的,分别以阻尼的旋转振荡为特征,并且通过非凝固过程,其中旋转近末端的初始状态,这明确显示出来各种反应环境量子动态。我们还探讨了中间耦合壳的丰富现象学,该系统显示了系统示出了复杂的动态行为,以顺序,延迟的方式组合弱和强耦合壳体的特征。我们的作品展示了TDVMPS方法的潜力,阐述了复杂开放量子系统的另外难以捉摸的不受触发的制度,并指出了超快瞬态过程中非纤维浴动态诱导的量子特性的定性实时修改的可能性。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第12期|115427.1-115427.7|共7页
  • 作者单位

    Institute for Quantum Optics and Quantum Information of the Austrian Academy of Sciences A-6020 Innsbruck Austria Institute for Theoretical Physics University of Innsbruck A-6020 Innsbruck Austria Departamento de Fisica Teorica de la Materia Condensada and Condensed Matter Physics Center (IFIMAC) Universidad Autonoma de Madrid E-28049 Madrid Spain;

    Cavendish Laboratory University of Cambridge J. J. Thomson Avenue Cambridge CB3 0HE United Kingdom;

    Cavendish Laboratory University of Cambridge J. J. Thomson Avenue Cambridge CB3 0HE United Kingdom;

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