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相关论文: Insulating phase in Sr$_2$IrO$_4$: An investigatio…

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To examine the insulating mechanism of 5$d$ transition metal oxide Sr$_2$IrO$_4$, we study the ground state properties of a three-orbital Hubbard model with a large relativistic spin-orbit coupling on a square lattice. Using a variational…

强关联电子 · 物理学 2014-09-22 Hiroshi Watanabe , Tomonori Shirakawa , Seiji Yunoki

We perform a time-resolved optical study of Sr$_2$IrO$_4$ to understand the influence of magnetic ordering on the low energy electronic structure of a strongly spin-orbit coupled $J_{eff}$=1/2 Mott insulator. By studying the recovery…

强关联电子 · 物理学 2012-03-21 D. Hsieh , F. Mahmood , D. H. Torchinsky , G. Cao , N. Gedik

We have investigated the temperature evolution of magnetism and its interrelation with structural parameters in perovskite-based layered compound Sr$_2$IrO$_4$, which is believed to be a $J_{eff}$ = 1/2 Mott insulator. The structural…

强关联电子 · 物理学 2014-12-15 Imtiaz Noor Bhatti , R. Rawat , A. Banerjee , A. K. Pramanik

Layered 5d transition metal oxides (TMOs) have attracted significant interest in recent years because of the rich physical properties induced by the interplay between spin-orbit coupling, bandwidth and on-site Coulomb repulsion. In Sr2IrO4,…

For iridates with large spatially extended 5d orbitals, it may be anticipated that distant neighbor interactions would play a crucial role in their ground state properties. From this perspective, we investigate the magnetic structure of…

材料科学 · 物理学 2019-09-04 Vijeta Singh , J. J. Pulikkotil

Neutron diffraction measurements are presented exploring the magnetic and structural phase behaviors of the candidate J$_{eff}=1/2$ Mott insulating iridate Sr$_2$IrO$_4$. Comparisons are drawn between the correlated magnetism in this single…

We have investigated temperature-dependent electronic structures of Na2IrO3 to unravel its insulating nature. Employing the combined scheme of the density-functional theory (DFT) and the dynamical mean-field theory (DMFT), we have shown…

强关联电子 · 物理学 2016-05-19 Minjae Kim , Beom Hyun Kim , B. I. Min

Protected by the interplay of on-site Coulomb interactions and spin-orbit coupling, Sr$_2$IrO$_4$ at high pressure is a rare example of a Mott insulator with a paramagnetic ground state. Here, using optical Raman scattering, we measure both…

Sr2IrO4 exhibits a novel insulating state driven by spin-orbit interactions. We report two novel phenomena, namely a large magnetoresistivity in Sr2IrO4 that is extremely sensitive to the orientation of magnetic field but exhibits no…

强关联电子 · 物理学 2015-05-28 M. Ge , T. F. Qi , O. B. Korneta , D. E. De Long , P. Schlottmann , W. P. Crummett , G. Cao

Sr$_2$IrO$_4$ is a weak ferromagnet where the spin arrangement is canted anti-ferromagnetic (AF). Moreover, the spin-structure coupling plays and important role in magnetic behavior of Sr$_2$IrO$_4$. In this concern the magnetization under…

强关联电子 · 物理学 2019-04-19 Imtiaz Noor Bhatti , A. K. Pramanik

Our magnetic, electrical, and thermal measurements on single-crystals of the novel Mott insulator, Sr2IrO4, reveal a novel giant magneto-electric effect (GME) arising from a frustrated magnetic/ferroelectric state whose signatures are: (1)…

强关联电子 · 物理学 2015-05-13 S. Chikara , O. Korneta , W. P. Crummett , L. E. DeLong , P. Schlottmann , G. Cao

Sr2IrO4 exhibits a novel insulating state assisted by spin-orbit interactions. A series of polycrystalline samples of Sr2-xIrO4 have been synthesized. It is found that deep Sr-vacancies of Sr2-xIrO4 greatly reduce the rotation of IrO6…

强关联电子 · 物理学 2016-11-01 Xuanyong Sun , S. L. Liu , Haiyun Wang , Bin Li , Jie Cheng , Z. H. Wang

Sr2IrO4 is a magnetic insulator driven by spin-orbit interaction (SOI) whereas the isoelectronic and isostructural Sr2RhO4 is a paramagnetic metal. The contrasting ground states have been shown to result from the critical role of the strong…

强关联电子 · 物理学 2012-09-07 T. F. Qi , O. B. Korneta , L. Li , K. Butrouna , V. S. Cao , Xiangang Wan , P. Schlottmann , R. K. Kaul , G. Cao

{\it Ab initio} analyses of A$_2$IrO$_4$ (A=Sr, Ba) are presented. Effective Hubbard-type models for Ir 5$d$ $t_{2g}$ manifolds downfolded from the global band structure are solved based on the dynamical mean-field theory. The results for…

强关联电子 · 物理学 2012-03-02 R. Arita , J. Kuneš , A. V. Kozhevnikov , A. G. Eguiluz , M. Imada

We discuss the notions of spin-orbital polarization and ordering in paramagnetic materials, and address their consequences in transition metal oxides. Extending the combined density functional and dynamical mean field theory scheme to the…

强关联电子 · 物理学 2014-12-16 Cyril Martins , Markus Aichhorn , Loig Vaugier , Silke Biermann

Here, we report an investigation of structural, magnetic and electronic properties in Y-doped layered iridate (Sr$_{1-x}$Y$_x$)$_2$IrO$_4$ ($x$ $\leq$ 0.1). The parent Sr$_2$IrO$_4$ is a well-studied spin-orbit coupling (SOC) induced…

强关联电子 · 物理学 2021-03-17 Imtiaz Noor Bhatti , A. K. Pramanik

The spin-orbit Mott insulator Sr${}_2$IrO${}_4$ has attracted a lot of interest in recent years from theory and experiment due to its close connection to isostructural high-temperature copper oxide superconductors. Despite of not being…

强关联电子 · 物理学 2019-05-22 Benjamin Lenz , Cyril Martins , Silke Biermann

Sr$_2$IrO$_4$ has attracted a lot of attention due to its structural and electronic similarities to La$_2$CuO$_4$ which is the parent compound of high-T$_c$ superconducting cuprates. It was proposed to be a strong spin-orbit coupled…

An intriguing idea of spin-orbit Mott insulator has been proposed to explain magnetic insulating behavior in various iridates. This scenario relies on the strength of the spin-orbit coupling being comparable to electronic correlations, and…

强关联电子 · 物理学 2013-05-30 Jean-Michel Carter , Hae-Young Kee

We report a first-order phase transition at T_M=357 K in single crystal Ca_2RuO_4, an isomorph to the superconductor Sr_2RuO_4. The discontinuous decrease in electrical resistivity signals the near destruction of the Mott insulating phase…

强关联电子 · 物理学 2009-10-31 C. S. Alexander , G. Cao , V. Dobrosavljevic , E. Lochner , S. McCall , J. E. Crow , R. P. Guertin
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