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Related papers: Algebraic vortex liquid in spin-1/2 triangular ant…

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We report nuclear magnetic resonance measurements of the spin-1/2 anisotropic triangular lattice antiferromagnet Cs$_2$CuCl$_4$ as a function of temperature and applied magnetic field. The observed temperature and magnetic field dependence…

Strongly Correlated Electrons · Physics 2015-06-04 M. -A. Vachon , G. Koutroulakis , V. F. Mitrović , Ookie Ma , J . B. Marston , A. P. Reyes , P. Kuhns , R. Coldea , Z. Tylczynski

Correlation functions (CFs) of the classical Heisenberg antiferromagnet on the pyrochlore lattice are studied by solving exactly the infinite-component spin-vector model. % As in many Fully Frustrated Lattices, the constraint due to the…

Strongly Correlated Electrons · Physics 2009-11-07 Benjamin Canals , Dmitry Garanin

We investigate the quantum antiferromagnetism arising from algebraic spin liquid via spontaneous chiral symmetry breaking. We claim that in the antiferromagnet massive Dirac spinons can appear to make broad continuum spectrum at high…

Strongly Correlated Electrons · Physics 2009-11-11 Ki-Seok Kim

Motivated by the physics of spin-orbital liquids, we study a model of interacting Dirac fermions on a bilayer honeycomb lattice at half filling, featuring an explicit global SO(3)$\times$U(1) symmetry. Using large-scale auxiliary-field…

Strongly Correlated Electrons · Physics 2022-02-25 Zi Hong Liu , Matthias Vojta , Fakher F. Assaad , Lukas Janssen

The quantum spin liquid material herbertsmithite is described by an antiferromagnetic Heisenberg model on the kagome lattice with non-negligible Dzyaloshinskii-Moriya interaction~(DMI). A well established phase transition to the $\mathbf…

Strongly Correlated Electrons · Physics 2017-07-04 Laura Messio , Samuel Bieri , Claire Lhuillier , Bernard Bernu

We predict that the gapless $U(1)$ Dirac spin liquid naturally emerges in a two-dimensional array of quantum dipoles. In particular, we demonstrate that the dipolar XY model$\unicode{x2014}$realized in both Rydberg atom arrays and ultracold…

Strongly Correlated Electrons · Physics 2024-06-04 Marcus Bintz , Vincent S. Liu , Johannes Hauschild , Ahmed Khalifa , Shubhayu Chatterjee , Michael P. Zaletel , Norman Y. Yao

We performed inelastic neutron scattering (INS) experiments to measure spin dynamics on a polycrystalline sample of a spin tube candidate CsCrF$_{4}$. The compound exhibits a successive phase transition from a paramagnetic phase through an…

Other Condensed Matter · Physics 2023-05-17 Hodaka Kikuchi , Shinichiro Asai , Hirotaka Manaka , Masato Hagihala , Shinichi Itoh , Takatsugu Masuda

Geometrical frustration in quantum magnets provides a fertile setting for unconventional phases of matter, including quantum spin liquids (QSLs). The trellis lattice, with its complex site arrangements and edge-sharing triangular motifs,…

We provide strong numerical evidence, using improved variational wave functions, for a ground state with vanishing spin gap in the spin-$1/2$ quantum Heisenberg model on the kagome lattice. Starting from the algebraic $U(1)$ Dirac spin…

Strongly Correlated Electrons · Physics 2014-01-20 Yasir Iqbal , Didier Poilblanc , Federico Becca

We study the ground-state properties of the quantum spin liquid (QSL) phases of the spin-$1/2$ antiferromagnetic Heisenberg model on the triangular lattice with nearest- ($J_1$), next-nearest- ($J_2$), and third-neighbor ($J_3$)…

Strongly Correlated Electrons · Physics 2023-05-10 Yi-Fan Jiang , Hong-Chen Jiang

A quantum spin liquid state has long been predicted to arise in spin-1/2 Heisenberg square-lattice antiferromagnets at the boundary region between N\'eel (nearest-neighbor interaction dominates) and columnar (next-nearest-neighbor…

Quantum triangular-lattice antiferromagnets are important prototype systems to investigate phenomena of the geometrical frustration in condensed matter. Apart from highly unusual magnetic properties, they possess a rich phase diagram…

Strongly Correlated Electrons · Physics 2019-03-13 S. A. Zvyagin , D. Graf , T. Sakurai , S. Kimura , H. Nojiri , J. Wosnitza , H. Ohta , T. Ono , H. Tanaka

We present single-crystal neutron scattering measurements of the spin-1/2 equilateral triangular lattice antiferromagnet Ba$_3$CoSb$_2$O$_9$. Besides confirming that the Co$^{2+}$ magnetic moments lie in the ab plane for zero magnetic…

Strongly Correlated Electrons · Physics 2016-03-02 J. Ma , Y. Kamiya , Tao Hong , H. B. Cao , G. Ehlers , W. Tian , C. D. Batista , Z. L. Dun , H. D. Zhou , M. Matsuda

Spin nematic order is investigated for a S=1 spin model on triangular lattice with bilinear-biquadratic interactions. We particularly studied an antiferro nematic order phase with three-sublattice structure, and magnetic properties are…

Strongly Correlated Electrons · Physics 2007-05-23 Hirokazu Tsunetsugu , Mitsuhiro Arikawa

Dirac semimetals provide a new platform for the quantum Hall effect at low magnetic fields. In the presence of strong spin-orbit coupling, a spin-split Landau level is expected to enhance the bulk quasiparticle excitation. Here we report…

Strongly Correlated Electrons · Physics 2026-03-02 Masashi Kumazaki , Azimjon Temurjonov , Yukihiro Watanabe , Taku Matsuhita , Yoshiaki Kobayashi , Yasuhiro Shimizu

Competition among exchange interactions is able to induce novel spin correlations on a bipartite lattice without geometrical frustration. A prototype example is the spiral spin liquid, which is a correlated paramagnetic state characterized…

The paper investigates the coexistence and interplay of spin and mass superfluidity in the antiferromagnetic spin-1 BEC. The hydrodynamical theory describes the spin degree of freedom by the equations similar to the…

Other Condensed Matter · Physics 2019-11-20 E. B. Sonin

We construct a two-dimensional (2D) lattice model that is argued to realize a gapped chiral spin liquid with (Ising) non-Abelian topological order. The building blocks are spin-1/2 two-leg ladders with $SU(2)$-symmetric spin-spin…

Strongly Correlated Electrons · Physics 2017-12-19 Po-Hao Huang , Jyong-Hao Chen , Adrain E. Feiguin , Claudio Chamon , Christopher Mudry

Dimethylammonium copper (II) chloride (also known as DMACuCl3 or MCCL) is a low dimensional S=1/2 quantum spin system proposed to be an alternating ferro-antiferromagnetic chain with similar magnitude ferromagnetic (FM) and…

Strongly Correlated Electrons · Physics 2009-11-11 M. B. Stone , W. Tian , G. E. Granroth , M. D. Lumsdena , J-H. Chung , D. G. Mandrusa , S. E. Nagler

Spirals and helices are common motifs of long-range order in magnetic solids, and they may also be organized into more complex emergent structures such as magnetic skyrmions and vortices. A new type of spiral state, the spiral spin-liquid,…

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