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Related papers: Anapole Correlations in Sr2IrO4 Defy the jeff = 1/…

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The relativistic Mott insulator Sr2IrO4 driven by large spin-orbit interaction is known for the Jeff = 1/2 antiferromagnetic state which closely resembles the electronic structure of parent compounds of superconducting cuprates. Here, we…

Strongly Correlated Electrons · Physics 2019-05-07 Fangdi Wen , Xiaoran Liu , Qinghua Zhang , M. Kareev , B. Pal , Yanwei Cao , J. W. Freeland , A. T. N'Diaye , P. Shafer , E. Arenholz , Lin Gu , J. Chakhalian

We investigate the magnetic ground state and phase transitions in the frustrated three-dimensional system CaMn2P2 using first-principles calculations combined with spin-dynamics simulations. Our DFT+U calculations reveal that CaMn2P2…

Strongly Correlated Electrons · Physics 2025-06-13 Bidyut Mallick , Sk. Soyeb Ali , S. K. Panda

Exploration of nontrivial magnetic states induced by strong spin-orbit interaction is a central topic of frustrated magnetism. Extensive studies are concentrated on rare-earth-based magnets and 4d/5d transition metal compounds, which are…

The unusual magnetic and electronic ground states of 5d iridates has been shown to be driven by intrinsically enhanced spin-orbit coupling (SOC). The influence of appreciable but reduced SOC in creating the manifested magnetic insulating…

Strongly Correlated Electrons · Physics 2015-12-01 S. Calder , L. Li , S. Okamoto , Y. Choi , R. Mukherjee , D. Haskel , D. Mandrus

Correlated materials with competing spin-orbit and crystal-field interactions can host composite spin-orbital magnons that are highly susceptible to structural and electronic perturbations, enabling the control of magnetic dynamics beyond…

In the high spin-orbit coupled Sr2IrO4, the high sensitivity of the ground state to the details of the local lattice structure shows a large potential for the manipulation of the functional properties by inducing local lattice distortions.…

We study the elementary excitations in 5d transition metal oxideSr$_2$IrO$_4$ by calculating the particle-hole Green's function within the random phase approximation on an antiferromagnetic ground state in the two-dimensional multi-orbital…

Strongly Correlated Electrons · Physics 2014-05-02 Jun-ichi Igarashi , Tatsuya Nagao

We explore the interplay of electron-electron correlations and spin-orbit coupling in the model Fermi liquid Sr2RuO4 using laser-based angle-resolved photoemission spectroscopy. Our precise measurement of the Fermi surface confirms the…

Strong spin-orbit interaction in the two dimensional compound Sr2IrO4 leads to the formation of Jeff=1/2 isospins with unprecedented dynamics. In Raman scattering a continuum attributed to double spin scattering is observed. With higher…

The nature of the effective spin Hamiltonian and magnetic order in the honeycomb iridates is explored by considering a trigonal crystal field effect and spin-orbit coupling. Starting from a Hubbard model, an effective spin Hamiltonian is…

Strongly Correlated Electrons · Physics 2012-07-10 Subhro Bhattacharjee , Sung-Sik Lee , Yong Baek Kim

We show how an accurate first-principles treatment of the canted-antiferromagnetic ground state of Sr$_2$IrO$_4$, a prototypical $5d$ correlated spin-orbit coupled material, can be obtained without invoking any free parameters such as the…

Strongly Correlated Electrons · Physics 2020-04-13 Christopher Lane , Yubo Zhang , James W. Furness , Robert S. Markiewicz , Bernardo Barbiellini , Jianwei Sun , Arun Bansil

The great success of point defects and dopants in semiconductors for quantum information processing has invigorated a search for molecules with analogous properties. Flexibility and tunability of desired properties in a large chemical space…

Materials Science · Physics 2023-01-11 Karolina Janicka , Aleksander L. Wysocki , Kyungwha Park

We have investigated the spin dynamics in the strongly correlated chain copper oxide SrCuO$_2$ for energies up to $\gtrsim 0.6$ eV using inelastic neutron scattering. We observe an acoustic band of magnetic excitations which is well…

Strongly Correlated Electrons · Physics 2010-07-28 I. A. Zaliznyak , H. Woo , T. G. Perring , C. L. Broholm , C. D. Frost , H. Takagi

We report a neutron spin-echo study of the critical dynamics in the $S=5/2$ antiferromagnets MnF$_2$ and Rb$_2$MnF$_4$ with three-dimensional (3D) and two-dimensional (2D) spin systems, respectively, in zero external field. Both compounds…

Strongly Correlated Electrons · Physics 2016-08-24 K. F. Tseng , T. Keller , A. C. Walters , R. J. Birgeneau , B. Keimer

We investigate magnetic excitations in the frustrated zigzag spin-1/2 chain compound $\beta$-TeVO$_4$ by inelastic neutron scattering. In the magnetically ordered ground state, the excitation spectrum exhibits coexisting magnon dispersion,…

Strongly Correlated Electrons · Physics 2018-09-10 M. Pregelj , O. Zaharko , U. Stuhr , A. Zorko , H. Berger , A. Prokofiev , D. Arčon

Spin nematic (SN) is a magnetic analog of classical liquid crystals, a fourth state of matter exhibiting characteristics of both liquid and solid. Particularly intriguing is a valence-bond SN, in which spins are quantum entangled to form a…

The A-site spinel material, CoAl2O4, is a physical realization of the frustrated diamond-lattice antiferromagnet, a model in which is predicted to contain unique incommensurate or `spin-spiral liquid' ground states. Our previous…

Recent optical second-harmonic generation experiments observed unexpected broken spatial symmetries in the undoped spin-orbit Mott insulator Sr$_2$IrO$_4$, leading to intensive debates on the nature of its ground state. We propose that it…

Strongly Correlated Electrons · Physics 2021-11-05 Yun-Peng Huang , Jin-Wei Dong , Ziqiang Wang , Sen Zhou

Starting from the quasi one-dimensional kinetic energy of the d_{yz} and d_{zx} bands we derive a bosonized description of the correlated electron system in Sr_2RuO_4. At intermediate coupling the magnetic correlations have a quasi…

Strongly Correlated Electrons · Physics 2009-11-07 Ralph Werner , V. J. Emery

Iridates with the 5$d^4$ electronic configuration have attracted recent interest due to reports of magnetically-ordered ground states despite longstanding expectations that their strong spin-orbit coupling would generate a $J = 0$…