Literature DB >> 29446382

A spin-orbital-entangled quantum liquid on a honeycomb lattice.

K Kitagawa1, T Takayama2, Y Matsumoto2, A Kato1, R Takano1, Y Kishimoto3, S Bette2, R Dinnebier2, G Jackeli2,4, H Takagi1,2,4.   

Abstract

The honeycomb lattice is one of the simplest lattice structures. Electrons and spins on this simple lattice, however, often form exotic phases with non-trivial excitations. Massless Dirac fermions can emerge out of itinerant electrons, as demonstrated experimentally in graphene, and a topological quantum spin liquid with exotic quasiparticles can be realized in spin-1/2 magnets, as proposed theoretically in the Kitaev model. The quantum spin liquid is a long-sought exotic state of matter, in which interacting spins remain quantum-disordered without spontaneous symmetry breaking. The Kitaev model describes one example of a quantum spin liquid, and can be solved exactly by introducing two types of Majorana fermion. Realizing a Kitaev model in the laboratory, however, remains a challenge in materials science. Mott insulators with a honeycomb lattice of spin-orbital-entangled pseudospin-1/2 moments have been proposed, including the 5d-electron systems α-Na2IrO3 (ref. 5) and α-Li2IrO3 (ref. 6) and the 4d-electron system α-RuCl3 (ref. 7). However, these candidates were found to magnetically order rather than form a liquid at sufficiently low temperatures, owing to non-Kitaev interactions. Here we report a quantum-liquid state of pseudospin-1/2 moments in the 5d-electron honeycomb compound H3LiIr2O6. This iridate does not display magnetic ordering down to 0.05 kelvin, despite an interaction energy of about 100 kelvin. We observe signatures of low-energy fermionic excitations that originate from a small number of spin defects in the nuclear-magnetic-resonance relaxation and the specific heat. We therefore conclude that H3LiIr2O6 is a quantum spin liquid. This result opens the door to finding exotic quasiparticles in a strongly spin-orbit-coupled 5d-electron transition-metal oxide.

Entities:  

Year:  2018        PMID: 29446382     DOI: 10.1038/nature25482

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  19 in total

1.  Ga NMR study of the local susceptibility in Kagome-based SrCr8Ga4O19: pseudogap and paramagnetic defects

Authors: 
Journal:  Phys Rev Lett       Date:  2000-10-16       Impact factor: 9.161

2.  Highly mobile gapless excitations in a two-dimensional candidate quantum spin liquid.

Authors:  Minoru Yamashita; Norihito Nakata; Yoshinori Senshu; Masaki Nagata; Hiroshi M Yamamoto; Reizo Kato; Takasada Shibauchi; Yuji Matsuda
Journal:  Science       Date:  2010-06-04       Impact factor: 47.728

3.  Kitaev-Heisenberg model on a honeycomb lattice: possible exotic phases in iridium oxides A2IrO3.

Authors:  Jirí Chaloupka; George Jackeli; Giniyat Khaliullin
Journal:  Phys Rev Lett       Date:  2010-07-09       Impact factor: 9.161

4.  Mott insulators in the strong spin-orbit coupling limit: from Heisenberg to a quantum compass and Kitaev models.

Authors:  G Jackeli; G Khaliullin
Journal:  Phys Rev Lett       Date:  2009-01-06       Impact factor: 9.161

5.  Fractional Spin Fluctuations as a Precursor of Quantum Spin Liquids: Majorana Dynamical Mean-Field Study for the Kitaev Model.

Authors:  Junki Yoshitake; Joji Nasu; Yukitoshi Motome
Journal:  Phys Rev Lett       Date:  2016-10-07       Impact factor: 9.161

6.  Proximate Kitaev quantum spin liquid behaviour in a honeycomb magnet.

Authors:  A Banerjee; C A Bridges; J-Q Yan; A A Aczel; L Li; M B Stone; G E Granroth; M D Lumsden; Y Yiu; J Knolle; S Bhattacharjee; D L Kovrizhin; R Moessner; D A Tennant; D G Mandrus; S E Nagler
Journal:  Nat Mater       Date:  2016-04-04       Impact factor: 43.841

7.  Spin Liquid State in the 3D Frustrated Antiferromagnet PbCuTe_{2}O_{6}: NMR and Muon Spin Relaxation Studies.

Authors:  P Khuntia; F Bert; P Mendels; B Koteswararao; A V Mahajan; M Baenitz; F C Chou; C Baines; A Amato; Y Furukawa
Journal:  Phys Rev Lett       Date:  2016-03-11       Impact factor: 9.161

8.  Spin liquids in frustrated magnets.

Authors:  Leon Balents
Journal:  Nature       Date:  2010-03-11       Impact factor: 49.962

9.  (17) O NMR study of the intrinsic magnetic susceptibility and spin dynamics of the quantum kagome antiferromagnet ZnCu3(OH)(6)Cl(2).

Authors:  A Olariu; P Mendels; F Bert; F Duc; J C Trombe; M A de Vries; A Harrison
Journal:  Phys Rev Lett       Date:  2008-02-28       Impact factor: 9.161

10.  Phase-sensitive observation of a spin-orbital Mott state in Sr2IrO4.

Authors:  B J Kim; H Ohsumi; T Komesu; S Sakai; T Morita; H Takagi; T Arima
Journal:  Science       Date:  2009-03-06       Impact factor: 47.728

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  15 in total

Review 1.  The Magnetic Genome of Two-Dimensional van der Waals Materials.

Authors:  Qing Hua Wang; Amilcar Bedoya-Pinto; Mark Blei; Avalon H Dismukes; Assaf Hamo; Sarah Jenkins; Maciej Koperski; Yu Liu; Qi-Chao Sun; Evan J Telford; Hyun Ho Kim; Mathias Augustin; Uri Vool; Jia-Xin Yin; Lu Hua Li; Alexey Falin; Cory R Dean; Fèlix Casanova; Richard F L Evans; Mairbek Chshiev; Artem Mishchenko; Cedomir Petrovic; Rui He; Liuyan Zhao; Adam W Tsen; Brian D Gerardot; Mauro Brotons-Gisbert; Zurab Guguchia; Xavier Roy; Sefaattin Tongay; Ziwei Wang; M Zahid Hasan; Joerg Wrachtrup; Amir Yacoby; Albert Fert; Stuart Parkin; Kostya S Novoselov; Pengcheng Dai; Luis Balicas; Elton J G Santos
Journal:  ACS Nano       Date:  2022-04-20       Impact factor: 18.027

2.  Engineering Kitaev exchange in stacked iridate layers: impact of inter-layer species on in-plane magnetism.

Authors:  Ravi Yadav; Mohamed S Eldeeb; Rajyavardhan Ray; Saicharan Aswartham; Mihai I Sturza; Satoshi Nishimoto; Jeroen van den Brink; Liviu Hozoi
Journal:  Chem Sci       Date:  2018-12-03       Impact factor: 9.825

3.  Van Hove singularity in the magnon spectrum of the antiferromagnetic quantum honeycomb lattice.

Authors:  G Sala; M B Stone; Binod K Rai; A F May; Pontus Laurell; V O Garlea; N P Butch; M D Lumsden; G Ehlers; G Pokharel; A Podlesnyak; D Mandrus; D S Parker; S Okamoto; Gábor B Halász; A D Christianson
Journal:  Nat Commun       Date:  2021-01-08       Impact factor: 14.919

4.  Heterospin frustration in a metal-fullerene-bonded semiconductive antiferromagnet.

Authors:  Yongbing Shen; Mengxing Cui; Shinya Takaishi; Hideyuki Kawasoko; Kunihisa Sugimoto; Takao Tsumuraya; Akihiro Otsuka; Eunsang Kwon; Takefumi Yoshida; Norihisa Hoshino; Kazuhiko Kawachi; Yasuhiko Kasama; Tomoyuki Akutagawa; Tomoteru Fukumura; Masahiro Yamashita
Journal:  Nat Commun       Date:  2022-01-25       Impact factor: 17.694

5.  Scaling and data collapse from local moments in frustrated disordered quantum spin systems.

Authors:  Itamar Kimchi; John P Sheckelton; Tyrel M McQueen; Patrick A Lee
Journal:  Nat Commun       Date:  2018-10-22       Impact factor: 14.919

6.  Two-dimensional, conductive niobium and molybdenum metal-organic frameworks.

Authors:  Michael E Ziebel; Justin C Ondry; Jeffrey R Long
Journal:  Chem Sci       Date:  2020-06-02       Impact factor: 9.825

7.  A quantum liquid of magnetic octupoles on the pyrochlore lattice.

Authors:  Romain Sibille; Nicolas Gauthier; Elsa Lhotel; Victor Porée; Vladimir Pomjakushin; Russell A Ewings; Toby G Perring; Jacques Ollivier; Andrew Wildes; Clemens Ritter; Thomas C Hansen; David A Keen; Gøran J Nilsen; Lukas Keller; Sylvain Petit; Tom Fennell
Journal:  Nat Phys       Date:  2020-03-23       Impact factor: 20.034

8.  Magnon bound states versus anyonic Majorana excitations in the Kitaev honeycomb magnet α-RuCl3.

Authors:  Dirk Wulferding; Youngsu Choi; Seung-Hwan Do; Chan Hyeon Lee; Peter Lemmens; Clément Faugeras; Yann Gallais; Kwang-Yong Choi
Journal:  Nat Commun       Date:  2020-03-30       Impact factor: 14.919

9.  Giant phonon anomalies in the proximate Kitaev quantum spin liquid α-RuCl3.

Authors:  Haoxiang Li; T T Zhang; A Said; G Fabbris; D G Mazzone; J Q Yan; D Mandrus; Gábor B Halász; S Okamoto; S Murakami; M P M Dean; H N Lee; H Miao
Journal:  Nat Commun       Date:  2021-06-10       Impact factor: 14.919

10.  Theory of the Kitaev model in a [111] magnetic field.

Authors:  Shang-Shun Zhang; Gábor B Halász; Cristian D Batista
Journal:  Nat Commun       Date:  2022-01-20       Impact factor: 17.694

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