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Improved energy extrapolation with infinite projected entangled-pair states applied to the two-dimensional Hubbard model

机译:具有无限投影纠缠对态的改进能量外推应用于二维Hubbard模型

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摘要

An infinite projected entangled-pair state (iPEPS) is a variational tensor network ansatz for two-dimensional wave functions in the thermodynamic limit where the accuracy can be systematically controlled by the bond dimension D. We show that for the doped Hubbard model in the strongly correlated regime (U/t = 8, n = 0.875) the iPEPS yields lower variational energies than state-of-the-art variational methods in the large two-dimensional limit, which demonstrates the competitiveness of the method. In order to obtain an accurate estimate of the energy in the exact infinite- D limit we introduce and test an extrapolation technique based on a truncation error computed in the iPEPS imaginary time evolution algorithm. The extrapolated energies are compared with accurate quantum Monte Carlo results at half-filling and with various other methods in the doped, strongly correlated regime.
机译:无限投影纠缠对状态(iPEPS)是热力学极限中二维波函数的变张量网络ansatz,其中精度可以通过键维D来系统地控制。我们证明了对于强掺杂的Hubbard模型,相关方案(U / t = 8,n = 0.875)在较大的二维范围内,iPEPS产生的变异能量低于最新的变异方法,这证明了该方法的竞争力。为了获得精确的无穷大D限制中的能量的准确估计,我们引入并测试了基于iPEPS虚构时间演化算法中计算出的截断误差的外推技术。将外推能量与半填充时的精确量子蒙特卡罗结果以及掺杂,强相关方案中的其他各种方法进行比较。

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  • 来源
    《Physical review》 |2016年第4期|045116.1-045116.7|共7页
  • 作者

    Philippe Corboz;

  • 作者单位

    Institute for Theoretical Physics, University of Amsterdam, Science Park 904, Postbus 94485, 1090 GL Amsterdam, The Netherlands;

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  • 正文语种 eng
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