Strongly Correlated Electrons · Physics
Theoretical study of insulating mechanism in multi-orbital Hubbard models with a large spin-orbit coupling: Slater versus Mott scenario in Sr$_2$IrO$_4$
Hiroshi Watanabe, Tomonori Shirakawa, Seiji Yunoki
2014-09-22
Strongly Correlated Electrons · Physics
Engineering spin-orbital magnetic insulator by tailoring superlattices
Jobu Matsuno, Kota Ihara, Shugen Yamamura, Hiroki Wadati +4
2015-06-22
Strongly Correlated Electrons · Physics
Electronic structure of relativistic Mott insulator Li$_2$RhO$_3$
Chao Cao, Yongkang Luo, Zhuan Xu, Jianhui Dai
2013-03-20
Strongly Correlated Electrons · Physics
Nature of the Insulating Ground State of the 5d PostPerovskite CaIrO3
Sun-Woo Kim, Chen Liu, Hyun-Jung Kim, Jun-Ho Lee +3
2015-09-04
Strongly Correlated Electrons · Physics
Na2IrO3 as a spin-orbit-assisted antiferromagnetic insulator with a 340 meV gap
R. Comin, G. Levy, B. Ludbrook, Z. -H. Zhu +9
2013-01-09
Strongly Correlated Electrons · Physics
Spin-orbit coupling, strong correlation, and insulator-metal transitions: the J$_{\rm eff}$ =3\2 ferromagnetic Mott insulator Ba$_{2}$NaOsO$_{6}$
Shruba Gangopadhyay, Warren E. Pickett
2015-06-23
Strongly Correlated Electrons · Physics
Possible proximity of the Mott insulating Iridate Na2IrO3 to a topological phase: Phase diagram of the Heisenberg-Kitaev model in a magnetic field
Hong-Chen Jiang, Zheng-Cheng Gu, Xiao-Liang Qi, Simon Trebst
2011-06-07
Strongly Correlated Electrons · Physics
Spin-Orbit Integrated Ground State and Magnetic Anisotropy in Sr$_2$IrO$_4$
Hosub Jin, Hogyun Jeong, Taisuke Ozaki, Jaejun Yu
2013-05-29
Strongly Correlated Electrons · Physics
Magnetic order, disorder, and excitations under pressure in the Mott insulator Sr$_2$IrO$_4$
Xiang Li, S. E. Cooper, A. Krishnadas, A. de la Torre +6
2021-11-29
Strongly Correlated Electrons · Physics
Bond Directional Anapole Order in a Spin-Orbit Coupled Mott Insulator Sr$_2$(Ir$_{1-x}$Rh$_x$)O$_{4}$
H. Murayama, K. Ishida, R. Kurihara, T. Ono +9
2021-02-10
Strongly Correlated Electrons · Physics
Effects of charge doping on Mott insulator with strong spin-orbit coupling, Ba$_2$NaOsO$_6$
E. Garcia, R. Cong, P. C. Forino, A. Tassetti +7
2023-11-21
Strongly Correlated Electrons · Physics
Orbital-Selective Spin-Orbit Mott Insulator in Fractional Valence Iridate La$_3$Ir$_3$O$_{11}$
Kai Wang, Jun Yang, Chaoyang Kang, Weikang Wu +4
2026-03-06
Strongly Correlated Electrons · Physics
CaIrO3: a Spin-Orbit Mott Insulator Beyond the jeff = 1/2 Ground State
M. Moretti Sala, K. Ohgushi, A. Al-Zein, Y. Hirata +2
2014-05-02
Strongly Correlated Electrons · Physics
Electronic structure and magnetic properties of NaOsO$_{3}$
Yongping Du, Xiangang Wan, Li Sheng, Jinming Dong +1
2012-05-17
Strongly Correlated Electrons · Physics
Evidence for orbital ordering in Ba$_2$NaOsO$_6$, a Mott insulator with strong spin orbit coupling, from First Principles
R. Cong, Ravindra Nanguneri, Brenda Rubenstein, V. F. Mitrović
2019-11-22
Mesoscale and Nanoscale Physics · Physics
Competition between magnetic order and charge localization in Na$_2$IrO$_3$ thin crystal devices
Josue Rodriguez, Gilbert Lopez, Samantha Crouch, Nicholas P. Breznay +14
2020-06-09
Materials Science · Physics
Impurity-induced transition to a Mott insulator in Sr$_3$Ru$_2$O$_7$
R. Mathieu, A. Asamitsu, Y. Kaneko, J. P. He +7
2009-11-11
Materials Science · Physics
Geometrical, electronic and magnetic properties of Na$_{0.5}$CoO$_2$ from first principles
Zhenyu Li, Jinlong Yang, J. G. Hou, Qingshi Zhu
2007-05-23
Strongly Correlated Electrons · Physics
Origin of the insulating state in honeycomb iridates and rhodates
I. I. Mazin, S. Manni, K. Foyevtsova, Harald O. Jeschke +2
2014-01-31
Strongly Correlated Electrons · Physics
The electronic structure of NaIrO$_3$, Mott insulator or band insulator?
Liang Du, Xianlei Sheng, Hongming Weng, Xi Dai
2014-01-13
Strongly Correlated Electrons · Physics
Metallic conductivity on Na-deficient structural domain walls in the spin-orbit Mott insulator Na$_2$IrO$_3$
Franziska A. Breitner, Julian Kaiser, Anton Jesche, Philipp Gegenwart
2023-12-12