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Related papers: Magnetic structural change of Sr2IrO4 upon Mn dopi…

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We investigate the magnetic properties of the series Sr2Ir1-xRuxO4 with neutron, resonant x-ray and magnetization measurements. The results indicate an evolution and coexistence of magnetic structures via a spin flop transition from…

Sr2IrO4 hosts a novel Jeff =1/2 Mott state and quasi-two-dimensional antiferromagnetic order, providing a unique avenue of exploring emergent states of matter and functions that are extraordinarily sensitive to any structural variations.…

Strongly Correlated Electrons · Physics 2023-09-19 H. W. Wang , L. Y. Zhang , N. Hu , B. You , Y. T. Chang , S. L. Yuan , C. L. Lu , J. M. Liu

$5d$ iridium oxides are of huge interest due to the potential for new quantum states driven by strong spin-orbit coupling. The strontium iridate Sr$_2$IrO$_4$ is particularly in the spotlight because of the so-called $j_\text{eff}=1/2$…

Sr2IrO4 is an archetypal spin-orbit-coupled Mott insulator with an antiferromagnetic state below 240 K. Here we report results of our study on single crystals of Sr2Ir1-xFexO4 (0<x<0.32) and Sr2Ir1-xCoxO4 (0<x<0.22). Fe doping retains the…

Strongly Correlated Electrons · Physics 2020-12-21 Bing Hu , Hengdi Zhao , Yu Zhang , Pedro Schlottmann , Feng Ye , Gang Cao

Materials that exhibit both strong spin orbit coupling and electron correlation effects are predicted to host numerous new electronic states. One prominent example is the Jeff =1/2 Mott state in Sr2IrO4, where introducing carriers is…

Stoichiometric Sr2IrO4 is a ferromagnetic Jeff = 1/2 Mott insulator driven by strong spin-orbit coupling. Introduction of very dilute oxygen vacancies into single-crystal Sr2IrO4-delta with delta < 0.04 leads to significant changes in…

Strongly Correlated Electrons · Physics 2010-08-30 O. B. Korneta , Tongfei Qi , S. Chikara , S. Parkin L. E. De Long , P. Schlottmann , G. Cao

We investigated electronic structure of 5d transition-metal oxide Sr2IrO4 using angle-resolved photoemission, optical conductivity, and x-ray absorption measurements and first-principles band calculations. The system was found to be well…

Strongly Correlated Electrons · Physics 2009-11-13 B. J. Kim , Hosub Jin , S. J. Moon , J. -Y. Kim , B. -G. Park , C. S. Leem , Jaeju Yu , T. W. Noh , C. Kim , S. -J. Oh , J. -H. Park , V. Durairaj , G. Cao , E. Rotenberg

Sr2IrO4 is a magnetic insulator assisted by strong spin-orbit coupling (SOC) whereas the Sr2RuO4 is a p-wave superconductor. The contrasting ground states have been shown to result from the critical role of the strong SOC in the iridate.…

Strongly Correlated Electrons · Physics 2016-04-26 S. J. Yuan , S. Aswartham , J. Terzic , H. Zheng , H. D. Zhao , P. Schlottmann , G. Cao

We have used a combination of resonant magnetic x-ray scattering (RMXS) and x-ray absorption spectroscopy (XAS) to investigate the properties of the doped spin-orbital Mott insulator Sr2Ir(1-x)Rh(x)O4 (0.07 < x < 0.70). We show that…

Strongly Correlated Electrons · Physics 2014-02-12 J. P. Clancy , A. Lupascu , H. Gretarsson , Z. Islam , Y. F. Hu , D. Casa , C. S. Nelson , S. C. Lamarra , G. Cao , Young-June Kim

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…

Strongly Correlated Electrons · Physics 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

The Jeff=1/2 state is manifested in systems with large cubic crystal field splitting and spin-orbit coupling that are comparable to the on-site Coulomb interaction, U. 5d transition metal oxides host parameters in this regime and strong…

Strongly Correlated Electrons · Physics 2014-02-18 S. Calder , G. -X Cao , S. Okamoto , J. W. Kim , V. R. Cooper , Z. Gai , B. C. Sales , M. D. Lumsden , D. Mandrus , A. D. Christianson

The 5d iridates have been the subject of much recent attention due to the predictions of a large array of novel electronic phases driven by twisting strong spin-orbit coupling and Hubbard correlation. As a prototype, the single layered…

Materials Science · Physics 2015-03-10 Chengliang Lu , Shuai Dong , Andy Quindeau , Daniele Preziosi , Ni Hu , Marin Alexe

We report structural, magnetic, transport and thermal properties of single-crystal Ca2Ru1-xIrxO4 (0 < x< 0.65). Ca2RuO4 is a structurally-driven Mott insulator with a metal-insulator transition at TMI = 357 K, which is well separated from…

Strongly Correlated Electrons · Physics 2016-04-26 S. J. Yuan , J. Terzic , J. C. Wang , S. Aswartham , W. H. Song , F. Ye , 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…

Strongly Correlated Electrons · Physics 2016-11-01 Xuanyong Sun , S. L. Liu , Haiyun Wang , Bin Li , Jie Cheng , Z. H. Wang

Sr$_2$IrO$_4$ is an extensively studied spin-orbit coupling induced insulator with antiferromagnetic ground state. The delicate balance between competing energy scales plays crucial role for its low temperature phase, and the route of…

Strongly Correlated Electrons · Physics 2017-10-31 Imtiaz Noor Bhatti , R. S. Dhaka , A. K. Pramanik

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…

Strongly Correlated Electrons · Physics 2021-03-17 Imtiaz Noor Bhatti , A. K. Pramanik

The magnetic structure and electronic groundstate of the layered perovskite Ba2IrO4 have been investigated using x-ray resonant magnetic scattering (XRMS). Our results are compared with those for Sr2IrO4, for which we provide supplementary…

Strongly Correlated Electrons · Physics 2013-03-19 S. Boseggia , R. Springell , H. C. Walker , Ch. Rüegg , H. Okabe , M. Isobe , R. S. Perry , S. P. Collins , D. F. McMorrow

Sr2IrO4 is a spin-orbit coupled insulator with an antiferromagnetic (AFM) transition at TN=240 K. We report results of a comprehensive study of single-crystal Sr2Ir1-xTbxO4. This study found that mere 3% (x=0.03) tetravalent Tb4+(4f7)…

Strongly Correlated Electrons · Physics 2016-01-20 J. C. Wang , S. Aswartham , Feng Ye , J. Terzic , H. Zheng , Daniel Haskel , Shalinee Chikara , Yong Choi , P. Schlottmann , Radu Custelcean , S. J. Yuan , G. Cao

We used resonant inelastic x-ray scattering to reveal the nature of magnetic interactions in Sr2IrO4, a 5d transition-metal oxide with a spin-orbit entangled ground state and Jeff=1/2 magnetic momemts, referred to as 'isospins'. The magnon…

Sr2IrO4 is one of the prime candidates for realizing exotic quantum spin orders owing to the subtle combination of spin-orbit coupling and electron correlation. Sensitive local magnetization measurement can serve as a powerful tool to study…

Materials Science · Physics 2025-03-26 Hyeokjun Heo , Jeongha An , Junyoung Kwon , Kwangrae Kim , Youngoh Son , B. J. Kim , Joonho Jang
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