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相关论文: Variational Monte Carlo Study of the Doped $t$-$J$…

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Using variational wave functions and Monte Carlo techniques, we study the antiferromagnetic Heisenberg model with first-neighbor $J_1$ and second-neighbor $J_2$ antiferromagnetic couplings on the honeycomb lattice. We perform a systematic…

强关联电子 · 物理学 2017-10-06 Francesco Ferrari , Samuel Bieri , Federico Becca

We study the ground state of the two-dimensional (2D) disordered Hubbard model by means of the projector quantum Monte Carlo (PQMC) method. This approach allows us to investigate the ground state properties of this model for lattice sizes…

无序系统与神经网络 · 物理学 2009-10-31 Gaetan Caldara , Bhargavi Srinivasan , Dima Shepelyansky

A doped Mott insulator exhibits peculiar properties associated with its singular sign structure. As a case study, we investigate the ground state and excitations of finite-size Heisenberg loops doped with one hole by exact diagonalization.…

强关联电子 · 物理学 2018-10-22 Wayne Zheng , Zheng-Yu Weng

We show that a magnetic field in the high-symmetry direction lifts the macroscopic classical ground-state degeneracy of the honeycomb $\Gamma$ model and induces a long-range magnetic order. While a simple spin-polarized state is stabilized…

强关联电子 · 物理学 2021-07-01 Zhongzheng Tian , Zhijie Fan , Preetha Saha , Gia-Wei Chern

We analyze a model of spinless fermions on a triangular lattice at half-filling interacting via strong nearest-neighbor repulsive interactions, V, using the variational Monte Carlo simulation technique. The existence of three-sublattice…

强关联电子 · 物理学 2009-11-13 M. Miyazaki , C. Hotta , S. Miyahara , K. Matsuda , N. Furukawa

The effectiveness of the recently developed Fixed-Node Quantum Monte Carlo method for lattice fermions, developed by van Leeuwen and co-workers, is tested by applying it to the 1D Kondo lattice, an example of a one-dimensional model with a…

凝聚态物理 · 物理学 2007-05-23 H. J. M. van Bemmel , W. van Saarloos , D. F. B. ten Haaf

We report a quantum Monte Carlo study of the thermodynamic properties of arrays of spin ladders with various widths ($n$), coupled via a weak inter-ladder exchange coupling $\alpha J$, where $J$ is the intra-ladder coupling both along and…

强关联电子 · 物理学 2009-10-31 Y. J. Kim , R. J. Birgeneau , M. A. Kastner , Y. S. Lee , Y. Endoh , G. Shirane , K. Yamada

Using finite-temperature determinantal quantum Monte Carlo calculations, we re-examine the pairing susceptibilities in the Hubbard model on the honeycomb lattice, focusing on doping levels onto and away from the van Hove singularity (VHS)…

强关联电子 · 物理学 2018-02-21 Tao Ying , Stefan Wessel

We consider the Kane-Mele-Hubbard model with a magnetic $\pi$ flux threading each honeycomb plaquette. The resulting model has remarkably rich physical properties. In each spin sector, the noninteracting band structure is characterized by a…

强关联电子 · 物理学 2014-08-26 Martin Bercx , Martin Hohenadler , Fakher F. Assaad

We carry out the variational Monte Carlo calculation to examine spatially inhomogeneous states in hole- and electron-doped cuprates. By using Gutzwiller approximation, we consider the excitations, arising from charge density, spin density…

超导电性 · 物理学 2011-12-30 Chung-Pin Chou , Ting-Kuo Lee

The two-dimensional $t$-$J$ model in the ground state is investigated by the power Lanczos method. The pairing-pairing correlation function for $d_{x^2-y^2}$-wave symmetry is enhanced in the realistic parameter regime for high-$T_c$…

强关联电子 · 物理学 2009-10-28 Masanori Kohno

A two chain ladder model is considered described by the strong coupling $t-t^\prime-J-J^\prime$ Hamiltonian. For the case of two holes moving in a background of antiferromagnetically interacting spins, exact, analytical results are derived…

强关联电子 · 物理学 2009-10-31 Indrani Bose , Saurabh Gayen

We show that for the half-filled Kondo lattice model on the honeycomb lattice a Kondo breakdown occurs at small Kondo couplings $J_k$ within the magnetically ordered phase. Our conclusions are based on auxiliary field quantum Monte Carlo…

强关联电子 · 物理学 2022-11-01 Marcin Raczkowski , Bimla Danu , Fakher F. Assaad

We revisit the accuracy of the variational Monte Carlo (VMC) method by taking an example of ground state properties for the one-dimensional Hubbard model. We start from the variational wave functions with the Gutzwiller and long-range…

强关联电子 · 物理学 2013-08-13 Ryui Kaneko , Satoshi Morita , Masatoshi Imada

We use the coupled cluster method to investigate the ground-state (GS) properties of the frustrated spin-1/2 $J_{1}$-$J_{2}$-$J_{3}$ model on the honeycomb lattice, with nearest-neighbor exchange coupling $J_1$ plus next-nearest-neighbor…

强关联电子 · 物理学 2012-04-24 P. H. Y. Li , R. F. Bishop

When an electronic system has strong correlations and a large spin-orbit interaction, it often exhibits a plethora of mutually competing quantum phases. How a particular quantum ground state is selected out of several possibilities is a…

A microscopic theory of the electronic spectrum and of superconductivity within the t-J model on the honeycomb lattice is developed. We derive the equations for the normal and anomalous Green functions in terms of the Hubbard operators by…

超导电性 · 物理学 2019-07-24 A. A. Vladimirov , D. Ihle , N. M. Plakida

We study the ground-state phase diagram of the quantum $J_1-J_2$ model on the honeycomb lattice by means of an entangled-plaquette variational ansatz. Values of energy and relevant order parameters are computed in the range $0\le…

强关联电子 · 物理学 2012-02-10 Fabio Mezzacapo , Massimo Boninsegni

In this paper, we study Bose-Hubbard models on the square and honeycomb lattices with complex hopping amplitudes, which are feasible by recent experiments of cold atomic gases in optical lattices. To clarify phase diagrams, we use an…

量子气体 · 物理学 2016-01-06 Yoshihito Kuno , Takashi Nakafuji , Ikuo Ichinose

Whether the doped t-J model on the Kagome lattice supports exotic superconductivity has not been decisively answered. In this paper, we propose a new class of variational states for this model and perform large-scale variational Monte Carlo…

超导电性 · 物理学 2021-11-16 Yi-Fan Jiang , Hong Yao , Fan Yang