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相关论文: Magnetic and nonmagnetic phases in doped AB2 t-J H…

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We present an extensive numerical study of the Hubbard model on the doped AB$_2$ chain, both in the weak coupling and the infinite-U limit. Due to the special unit cell topology, this system displays a rich variety of phases as function of…

强关联电子 · 物理学 2008-02-27 R. R. Montenegro-Filho , M. D. Coutinho-Filho

We investigate the ground-state magnetism of a Hubbard model in a system consisting of a main frame (subsystem) and a particle bath (center sites). The hole doping in the main frame is controlled by adjusting the chemical potential of the…

强关联电子 · 物理学 2025-05-09 Hiroaki Onishi , Seiji Miyashita

The ground-state properties of the t-J model on a d-dimensional hypercubic lattice are examined in the limit of large d. It is found that the undoped system is an ordered antiferromagnet, and that the doped system phase separates into a…

强关联电子 · 物理学 2009-10-30 E. W. Carlson , S. A. Kivelson , Z. Nussinov , V. J. Emery

We study the magnetic orbital effect of a doped two-leg ladder in the presence of a magnetic field component perpendicular to the ladder plane. Combining both low-energy approach (bosonization) and numerical simulations (density-matrix…

强关联电子 · 物理学 2007-11-05 G. Roux , E. Orignac , S. R. White , D. Poilblanc

The ground state (GS) properties of the quasi-one-dimensional $AB_2$ Hubbard model are investigated taking the effects of charge and spin quantum fluctuations on equal footing. In the strong-coupling regime, we derive a low-energy…

强关联电子 · 物理学 2018-12-17 V. M. Martinez Alvarez , M. D. Coutinho-Filho

We present magnetic properties of the three-band Hubbard model in the para- and antiferromagnetic phase on a hypercubic lattice calculated with the Dynamical Mean-Field Theory (DMFT). To allow for solutions with broken spin-symmetry we…

强关联电子 · 物理学 2009-10-31 Th. Maier , M. B. Zoelfl , Th. Pruschke , J. Keller

Recent quantum-gas microscopy of ultracold atoms and scanning tunneling microscopy of the cuprates reveal new detailed information about doped Mott antiferromagnets, which can be compared with calculations. Using cellular dynamical…

强关联电子 · 物理学 2017-12-27 L. Fratino , M. Charlebois , P. Sémon , G. Sordi , A. -M. S. Tremblay

We present a density matrix renormalization group (DMRG) study of an extended $t-J$ model with hopping to the first and second neighbors -- the one dimensional $t_1-t_2-J$ model. The full phase diagram as a function of the density $n$ and…

强关联电子 · 物理学 2024-02-27 Luhang Yang , Adrian E. Feiguin

While the exact phase diagram of the Fermi-Hubbard model remains poorly understood despite decades of progress, nearly 60 years ago, Nagaoka proved that a single dopant in an otherwise half-filled Hubbard system can bring about…

强关联电子 · 物理学 2025-06-12 Robin C. Newby , Ehsan Khatami

The 2-leg t-J ladder forms a spin liquid at half-filling which evolves to a Luther-Emery liquid upon doping. Our aim is to obtain a complete phase diagram for isotropic coupling (i.e. rungs and legs equal) as a function of electron density…

强关联电子 · 物理学 2009-10-31 T. F. A. Muller , T. M. Rice

We report results of large scale ground state density matrix renormalization group(DMRG) calculations on $t$-$t'$-$J$ cylinders with circumferences 6 and 8. We determine a rough phase diagram which appears to approximate the 2D system.…

强关联电子 · 物理学 2021-10-29 Shengtao Jiang , Douglas J. Scalapino , Steven R. White

We present different numerical calculations based on variational quantum Monte Carlo simulations supporting a ferromagnetic ground-state for finite and small hole densities in the two-dimensional infinite-$U$ Hubbard model. Moreover, by…

强关联电子 · 物理学 2009-11-07 Federico Becca , Sandro Sorella

We study the infinite-U Hubbard model on ladders of 2, 4 and 6 legs with nearest (t) and next-nearest (t') neighbor hoppings by means of the density-matrix renormalization group algorithm. In particular, we analyze the stability of the…

强关联电子 · 物理学 2019-05-16 G. G. Blesio , M. G. Gonzalez , F. T. Lisandrini

Unraveling the microscopic mechanisms governing the physics of doped quantum magnets is key to advancing our understanding of strongly correlated quantum matter. Quantum simulation platforms, e.g., ultracold atoms in optical lattices or…

量子气体 · 物理学 2024-12-04 Timothy J. Harris , Ulrich Schollwöck , Annabelle Bohrdt , Fabian Grusdt

In the limit of weak exchange, J, at low hole concentration, the ground state of the 2D t-J model is believed to be ferromagnetic. We study the leading instability of this Nagaoka state, which emerges with increasing J. Both exact…

强关联电子 · 物理学 2009-11-07 E. Eisenberg , R. Berkovits , D. A. Huse , B. L. Altshuler

The phase diagram of the planar t--J model at small hole doping is investigated by finite size scaling of exact diagonalisation data of NXN clusters (up to 26). Hole-droplet binding energies, compressibility and static spin and charge…

凝聚态物理 · 物理学 2009-10-28 D. Poilblanc

A wide variety of experimental platforms, ranging from semiconductor quantum-dot arrays to moir\'e materials, have recently emerged as powerful quantum simulators for studying the Hubbard model and its variants. Motivated by these…

强关联电子 · 物理学 2024-10-03 Johannes Dieplinger , Rhine Samajdar , R. N. Bhatt

The ground-state phase diagram of the two-dimensional t-J model is investigated in the context of the tensor network algorithm in terms of the graded Projected Entangled-Pair State representation of the ground-state wave functions. There is…

超导电性 · 物理学 2010-01-20 Sheng-Hao Li , Qian-Qian Shi , Huan-Qiang Zhou

The next-nearest-neighbour hopping term t' is shown to stabilize the AF state of the doped Hubbard model with respect to transverse perturbations in the order- parameter by strongly suppressing the intraband particle-hole processes. For a…

强关联电子 · 物理学 2009-11-07 Avinash Singh , Haranath Ghosh

The recent developments of the phase string theory for doped antiferromagnets will be briefly reviewed. Such theory is built upon a singular phase string effect induced by the motion of holes in a doped antiferromagnet, which as a precise…

强关联电子 · 物理学 2007-05-23 Zheng-Yu Weng
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