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Self-adaptive tensor network states with multi-site correlators

机译:具有多站点相关器的自适应张量网络状态

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We introduce the concept of self-adaptive tensor network states (SATNSs) based on multi-site correlators. The SATNS ansatz gradually extends its variational space incorporating the most important next-order correlators into the ansatz for the wave function. The selection of these correlators is guided by entanglement-entropy measures from quantum information theory. By sequentially introducing variational parameters and adjusting them to the system under study, the SATNS ansatz achieves keeping their number significantly smaller than the total number of full-configuration interaction parameters. The SATNS ansatz is studied for manganocene in its lowest-energy sextet and doublet states; the latter of which is known to be difficult to describe. It is shown that the SATNS parametrization solves the convergence issues found for previous correlator-based tensor network states. Published by AIP Publishing.
机译:我们基于多站点相关器介绍自适应张量网络状态(SATNSS)的概念。 SATNS ANSATZ逐渐扩展其变分空间,将最重要的下一个相关器结合到用于波浪功能的ANSAT中。 这些相关器的选择是由量子信息理论的纠缠熵措施引导的。 通过顺序地引入变分参数并将其调整到研究下的系统,SATNS ANSATZ实现了它们的数量明显小于全配置交互参数的总数。 SATNS ANSATZ在其最低能量的SEXTET和DOWBLET状态下研究了合资单一; 所知的后者难以描述。 结果表明,SATNS参数化解决了基于相关器的张量网络状态的收敛问题。 通过AIP发布发布。

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