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APS -APS March Meeting 2017 - Event - Density Matrix Embedding Theory for Symmetry Protected Topological Systems

机译:APS -APS 2017年3月会议-事件-对称保护拓扑系统的密度矩阵嵌入理论

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Density Matrix Embedding Theory (DMET) presents a novel approach in capturing the physics of strongly correlated systems. It essentially describes finite fragments in the presence of environment while explicitly allowing quantum entanglement between both. DMET has been remarkably successful in studying systems ranging from molecules to solids and the paradigmatic Hubbard model. In this talk, we will present extensions of DMET to systems that are allowed to break SU(2) spin symmetry as well as U(1) particle number symmetry. This will enable us to study a range of broken symmetry phases such as topological superconductivity and, more interestingly, their interplay with strong correlations.
机译:密度矩阵嵌入理论(DMET)提出了一种捕获强相关系统物理的新颖方法。它本质上描述了存在环境时的有限片段,同时明确允许两者之间发生量子纠缠。 DMET在研究从分子到固体以及范式哈伯德模型的系统方面已经取得了巨大的成功。在本演讲中,我们将介绍DMET扩展到允许打破SU(2)自旋对称性以及U(1)粒子数对称性的系统。这将使我们能够研究一系列破碎的对称相,例如拓扑超导性,更有趣的是,它们之间具有很强的相关性。

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