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The exactly solvable Kitaev model on the honeycomb lattice has recently received enormous attention linked to the hope of achieving novel spin-liquid states with fractionalized Majorana-like excitations.
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2010
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2010
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2010
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2010
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2011
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2011
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I. Kimchi and Y.-Z. You, “Kitaev-Heisenberg- J 2 {J}_{2} – J 3 {J}_{3} model for the iridates A 2 IrO 3 ,” Phys. Rev. B 84
2011
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2011
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2011
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2012
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2012
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2012
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Y. Singh, S. Manni, J. Reuther, T. Berlijn, R. Thomale, W. Ku, S. Trebst, and P. Gegenwart, “Relevance of the Heisenberg-Kitaev model for the honeycomb lattice iridates A 2 IrO 3 ,” Phys. Rev. Lett. 108
2012
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F. Ye, S. Chi, H. Cao, B. C. Chakoumakos, J. A. Fernandez-Baca, R. Custelcean, T. F. Qi, O. B. Korneta, and G. Cao, “Direct evidence of a zigzag spin-chain structure in the honeycomb lattice: A neutron and x-ray diffraction investigation of single-crystal Na 2 IrO 3 ,” Phys. Rev. B 85
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2015
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2015
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2012
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2012
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I. I. Mazin, H. O. Jeschke, K. Foyevtsova, R. Valentí, and D. I. Khomskii, “Na 2 IrO 3 as a molecular orbital crystal,” Phys. Rev. Lett. 109
2012
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2012
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F. Hulliger, Structural chemistry of layer-type phases , Vol. 5 (Springer Science & Business Media, 2012)
2012
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D. Wulferding, K.-Y. Choi, P. Lemmens, A. N. Ponomaryov, J. van Tol, A. T. M. Nazmul Islam, S. Toth, and B. Lake, “Softened magnetic excitations in the s = 3 2 s=\frac{3}{2} distorted triangular antiferromagnet α \alpha -CaCr 2 O 4 ,” J. Phys.: Condens. Matter 24
2012
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N. A. Bogdanov, V. M. Katukuri, H. Stoll, J. van den Brink, and L. Hozoi, “Post-perovskite CaIrO 3 : A j = 1 2 j=\frac{1}{2}
2012
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A. Kolchinskaya, P. Komissinskiy, M. Baghaie Yazdi, M. Vafaee, D. Mikhailova, N. Narayanan, H. Ehrenberg, F. Wilhelm, A. Rogalev, and L. Alff, “Magnetism and spin-orbit coupling in Ir-based double perovskites La 2-x
2012
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2016
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J. Knolle, Dynamics of a Quantum Spin Liquid (Springer, 2016)
2016
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B. Perreault, J. Knolle, N. B. Perkins, and F. J. Burnell, “Resonant Raman scattering theory for Kitaev models and their Majorana fermion boundary modes,” Phys. Rev. B 94
2016
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Y. Yamaji, T. Suzuki, T. Yamada, S. Suga, N. Kawashima, and M. Imada, “Clues and criteria for designing a Kitaev spin liquid revealed by thermal and spin excitations of the honeycomb iridate Na 2 IrO 3 ,” Phys. Rev. B 93
2016
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L. Janssen, E. C. Andrade, and M. Vojta, “Honeycomb-lattice Heisenberg-Kitaev model in a magnetic field: Spin canting, metamagnetism, and vortex crystals,” Phys. Rev. Lett. 117
2016
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S. Nishimoto, V. M. Katukuri, V. Yushankhai, H. Stoll, U. K. Rößler, L. Hozoi, I. Rousochatzakis, and J. van den Brink, “Strongly frustrated triangular spin lattice emerging from triplet dimer formation in honeycomb Li 2 IrO 3 ,” Nature Comm. 7
2016
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R. Yadav, N. A. Bogdanov, V. M. Katukuri, S. Nishimoto, J. van den Brink, and L. Hozoi, “Kitaev exchange and field-induced quantum spin-liquid states in honeycomb α \alpha -RuCl 3 ,” Sci. Reports 6
2016
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V. M. Katukuri, R. Yadav, L. Hozoi, S. Nishimoto, and J. van den Brink, “The vicinity of hyper-honeycomb β \beta -Li 2 IrO 3 to a three-dimensional kitaev spin liquid state,” Sci. Reports 6
2016
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S. M. Winter, Y. Li, H. O. Jeschke, and R. Valentí, “Challenges in design of Kitaev materials: Magnetic interactions from competing energy scales,” Phys. Rev. B 93
2016
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E. K.-H. Lee, J. G. Rau, and Y. B. Kim, “Two iridates, two models, and two approaches: A comparative study on magnetism in three-dimensional honeycomb materials,” Phys. Rev. B 93
2016
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I. Rousochatzakis, U. K. Rössler, J. van den Brink, and M. Daghofer, “Kitaev anisotropy induces mesoscopic ℤ 2 \mathbb{Z}_{2} vortex crystals in frustrated hexagonal antiferromagnets,” Phys. Rev. B 93
2016
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J. Chaloupka and G. Khaliullin, “Magnetic anisotropy in the Kitaev model systems Na 2 IrO 3 and α \alpha -RuCl 3 ,” Phys. Rev. B 94
2016
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F. Freund, S. C. Williams, R. D. Johnson, R. Coldea, P. Gegenwart, and A. Jesche, “Single crystal growth from separated educts and its application to lithium transition-metal oxides,” Sci. Reports 6
2016
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X. Zhou, H. Li, J. A. Waugh, S. Parham, H.-S. Kim, J. A. Sears, A. Gomes, H.-Y. Kee, Y.-J. Kim, and D. S. Dessau, “Angle-resolved photoemission study of the Kitaev candidate α \alpha -RuCl 3 ,” Phys. Rev. B 94
2016
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A. Koitzsch, C. Habenicht, E. Müller, M. Knupfer, B. Büchner, H. C. Kandpal, J. van den Brink, D. Nowak, A. Isaeva, and Th. Doert, “ J eff J_{\rm eff} description of the honeycomb Mott insulator α \alpha -RuCl 3 ,” Phys. Rev. Lett. 117
2016
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S. Sinn, C. H. Kim, B. H. Kim, K. D. Lee, C. J. Won, J. S. Oh, M. Han, Y. J. Chang, N. Hur, H. Sato, B.-G. Park, C. Kim, H.-D. Kim, and T.-W. Noh, “Electronic structure of the Kitaev material α \alpha -RuCl 3 probed by photoemission and inverse photoemission spectroscopies,” Sci. Reports 6
2016
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N. Alidoust, C. Liu, S.-Y. Xu, I. Belopolski, T. Qi, M. Zeng, D. S. Sanchez, H. Zheng, G. Bian, M. Neupane, Y.-T. Liu, S. D. Wilson, H. Lin, A. Bansil, G. Cao, and M. Z. Hasan, “Observation of metallic surface states in the strongly correlated Kitaev-Heisenberg candidate Na 2 IrO 3 ,” Phys. Rev. B 93
2016
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K. Mehlawat and Y. Singh, “First-order density-wave-like transitions in surface-doped Na 2 IrO 3 ,” Phys. Rev. B 94
2016
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Z. V. Pchelkina, S. V. Streltsov, and I. I. Mazin, “Spectroscopic signatures of molecular orbitals in transition metal oxides with a honeycomb lattice,” Phys. Rev. B 94
2016
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S. C. Williams, R. D. Johnson, F. Freund, S. Choi, A. Jesche, I. Kimchi, S. Manni, A. Bombardi, P. Manuel, P. Gegenwart, and R. Coldea, “Incommensurate counterrotating magnetic order stabilized by Kitaev interactions in the layered honeycomb α \alpha -Li 2 IrO 3 ,” Phys. Rev. B 93
2016
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L. Sandhya Kumari, M. Wallace, J. T. Barnes, B. Tong, A. P. Ramirez, and M. A. Subramanian, “Charge transfer instability in a mixed Ir/Rh honeycomb lattice in Li 2 Ir 1-x
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