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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Comparing the generalized Kadanoff-Baym ansatz with the full Kadanoff-Baym equations for an excitonic insulator out of equilibrium
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Comparing the generalized Kadanoff-Baym ansatz with the full Kadanoff-Baym equations for an excitonic insulator out of equilibrium

机译:将广义的Kadanoff-Baym Ansatz与全kadanoff-Baym方程的升级绝缘体与平衡均衡

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摘要

We investigate out-of-equilibrium dynamics in an excitonic insulator (EI) with a finite-momentum pairing perturbed by a laser-pulse excitation and a sudden coupling to fermionic baths. The transient dynamics of the excitonic order parameter is resolved using the full nonequilibrium Green's function approach and the generalized Kadanoff-Baym ansatz (GKBA) within the second-order Born approximation. The comparison between the two approaches after a laser-pulse excitation shows a good agreement in the weak and the intermediate photodoping regime. In contrast, the laser-pulse dynamics resolved by the GKBA does not show a complete melting of the excitonic order after a strong excitation. Instead we observe persistent oscillations of the excitonic order parameter with a predominant frequency given by the renormalized equilibrium band gap. This anomalous behavior can be overcome within the GKBA formalism by coupling to an external bath, which leads to a transition of the EI system toward the normal state. We analyze the long-time evolution of the system and distinguish decay timescales related to dephasing and thermalization.
机译:我们在激光脉冲激发和突然耦合到Fermionic浴中,从激发器绝缘体(EI)中调查兴奋的绝缘体(EI)中的均衡动力学。使用完全非预测绿色功能方法和二阶出生近似内的全部非QuiLibrium函数方法和广义的Kadanoff-Baym Ansatz(GKBA)来解决激发顺序参数的瞬态动态。激光脉冲激发后两种方法之间的比较显示了弱和中间光刻制度的良好一致性。相反,由GKBA解决的激光脉冲动力学在强烈激励后,GKBA解析的激光脉冲动态不会显示出兴趣顺序的完全熔化。相反,我们观察激发器参数的持续振荡,其具有由重字均衡带隙给出的主要频率。通过耦合到外部浴,可以在GKBA形式主义内克服这种异常行为,这导致EI系统朝向正常状态的转变。我们分析了系统的长期演变,并区分衰减时间和热化相关的衰减时间表。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第11期|115157.1-115157.13|共13页
  • 作者单位

    QTF Centre of Excellence Turku Centre for Quantum Physics Department of Physics and Astronomy University of Turku 20014 Turku Finland;

    Center for Computational Quantum Physics (CCQ) Flatiron Institute 162 Fifth Avenue New York New York 10010 USA;

    Department of Physics University of Erlangen-Niirnberg 91058 Erlangen Germany;

    Max Planck Institute for the Structure and Dynamics of Matter Lumper Chaussee 149 22761 Hamburg Germany;

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