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相关论文: Spontaneous Currents in Spinless Fermion Lattice M…

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Conformal field theory has turned out to be a powerful tool to derive interesting lattice models with analytical ground states. Here, we investigate a class of critical, one-dimensional lattice models of fermions and hardcore bosons related…

量子物理 · 物理学 2019-06-28 Dillip K. Nandy , N. S. Srivatsa , Anne E. B. Nielsen

We obtain the phase diagram of fully-packed hard plates on a cubic lattice. Each plate covers an elementary plaquette of the cubic lattice and occupies its four vertices, with each vertex of the cubic lattice occupied by exactly one such…

统计力学 · 物理学 2023-07-12 G. Rakala , D. Mandal , S. Biswas , K. Damle , D. Dhar , R. Rajesh

We propose an eigen-operator scheme to study the lattice model of interacting spinless fermions at half filling and show that this model possesses a hidden form of reflection positivity in its Majorana fermion representation. Based on this…

强关联电子 · 物理学 2015-10-14 Zhong-Chao Wei , Xing-Jie Han , Zhi-Yuan Xie , Tao Xiang

We study the effective spin-orbital model that describes the magnetism of 4$d^1$ or 5$d^1$ Mott insulators in ideal tricoordinated lattices. In the limit of vanishing Hund's coupling, the model has an emergent SU(4) symmetry which is made…

强关联电子 · 物理学 2018-11-21 Willian M. H. Natori , Eric C. Andrade , Rodrigo G. Pereira

Fermions on the lattice have bosonic excitations generated from the underlying periodic background. These, the lattice bosons, arise near the empty band or when the bands are nearly full. They do not depend on the nature of the interactions…

高能物理 - 理论 · 物理学 2007-05-23 Jayprokas Chakrabarti , Asis Basu , Bijon Bagchi

It is known that a two-dimensional spin system can acquire a topological Hopf term by coupling to massless Dirac fermions whose energy spectrum has a single cone. But it is challenging to realize the Hopf term in condensed matter physics…

强关联电子 · 物理学 2023-01-31 YanGuang Yue , ZhengXin Liu

We study the phase diagram of the spin-orbital model in both the weak and strong limits of the quartic spin-orbital exchange interaction. This allows us to study quantum phase transitions in the model and to approach from both sides the…

凝聚态物理 · 物理学 2009-11-07 E. Zasinas , O. P. Sushkov , J. Oitmaa

Shaking a lattice system, by modulating the location of its sites periodically in time, is a powerful method to create effective magnetic fields in engineered quantum systems, such as cold gases trapped in optical lattices. However, such…

量子气体 · 物理学 2016-09-08 C. E. Creffield , G. Pieplow , F. Sols , N. Goldman

Pair spin-orbit interaction can emerge in strongly-interacting systems characterized by a large spin-orbit coupling. Here we study the role of this interaction in stabilizing ordered and unconventional superconducting phases. We find that,…

超导电性 · 物理学 2025-07-30 Feng Liu , Alessandro Principi

We propose a minimal model for the emergence of a directed flow in autonomous Hamiltonian systems. It is shown that internal breaking of the spatio-temporal symmetries, via localised initial conditions, that are unbiased with respect to the…

统计力学 · 物理学 2011-02-07 D. Hennig , A. D. Burbanks , C. Mulhern , A. H. Osbaldestin

We investigate localization and persistent currents in a helical tight-binding lattice subject to two independent magnetic fluxes and a quasiperiodic on-site potential. Working with non-interacting, spinless fermions under periodic boundary…

无序系统与神经网络 · 物理学 2025-12-23 Taylan Yildiz , B. Tanatar

We propose a simple experimental scheme to realize simultaneously the one-dimensional spin-orbit coupling and the staggered spin-flip in ultracold pseudospin-$1/2$ atomic Fermi gases trapped in square optical lattices. In the absence of…

量子气体 · 物理学 2017-02-22 Y. Deng , T. Shi , H. Hu , L. You , S. Yi

We study a model for itinerant, strongly interacting fermions where a judicious tuning of the interactions leads to a supersymmetric Hamiltonian. On the triangular lattice this model is known to exhibit a property called superfrustration,…

强关联电子 · 物理学 2014-12-04 L. Huijse , D. Mehta , N. Moran , K. Schoutens , J. Vala

We construct a Hamiltonian that singles out the chiral spin liquid on a square lattice with periodic boundary conditions as the exact and, apart from the two-fold topological degeneracy, unique ground state.

强关联电子 · 物理学 2007-09-11 Darrell F. Schroeter , Eliot Kapit , Ronny Thomale , Martin Greiter

Close to half filling and in the limit of strong interactions the Hubbard model leads a spin Hamiltonian. In its original isotropic form this is the Heisenberg model with antiferromagnetic coupling $J$. On a square lattice there is no…

强关联电子 · 物理学 2016-12-28 Aaron Farrell , P. -K. Wu , Y. -J. Kao , T. Pereg-Barnea

We classify the magnetic ground states of a 2D lattice of localized magnetic moments which are coupled to a superconducting substrate with Rashba-spin-orbit coupling. We discover a rich magnetic phase diagram with surprisingly complex…

We study possible spin liquids on square lattice that respect all lattice symmetries and time-reversal symmetry within the framework of Schwinger boson (mean-field) theory. Such spin liquids have spin gap and emergent Z_2 gauge field…

强关联电子 · 物理学 2016-08-03 Xu Yang , Fa Wang

Motivated by the recent Ge hole spin qubit experiments, we construct and study a two-leg spin ladder from a quantum dot array with spin-orbit couplings (SOCs), aiming to uncover the many-body phase diagrams and provide concrete guidance for…

强关联电子 · 物理学 2026-01-13 Yang-Zhi Chou , Sankar Das Sarma

We investigate periodic straight-line orbits (SLO) in Hamiltonian force fields using both direct and inverse methods. A general theorem is proven for natural Hamiltonians quadratic in the momenta in arbitrary dimension and specialized to…

混沌动力学 · 物理学 2010-06-22 J. E. Howard , J. D. Meiss

We have calculated the ground state wave functions for a systems of multicomponent interacting fermions. We show that it describes the state with spontaneously broken chiral symmetry. In the limit of an infinitely strong interaction it…

强关联电子 · 物理学 2007-05-23 V. V. Afonin , V. L. Gurevich , V. Yu. Petrov