English
Related papers

Related papers: Pressure-induced transition from Jeff=1/2 to S=1/2…

200 papers

Transition metal oxides exhibit various competing phases and exotic phenomena depending on how their reaction to the rich degeneracy of the $d$-orbital. Large spin-orbit coupling (SOC) reduces this degeneracy in a unique way by providing a…

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

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

Strong spin-orbit coupling lifts the degeneracy of t2g orbitals in 5d transition-metal systems, leaving a Kramers doublet and quartet with effective angular momentum of Jeff = 1/2 and 3/2, respectively. These spin-orbit entangled states can…

Sr3Ir2O7 exhibits a novel Jeff=1/2 insulating state that features a splitting between Jeff=1/2 and 3/2 bands due to spin-orbit interaction. We report a metal-insulator transition in Sr3Ir2O7 via either dilute electron doping (La3+ for Sr2+)…

Strongly Correlated Electrons · Physics 2015-06-15 L. Li , P. P. Kong , T. F. Qi , C. Q. Jin , S. J. Yuan , L. E. DeLong , P. Schlottmann , G. Cao

By combining 5d transition-metal oxides showing pronounced spin-orbit interactions and oxide-based heterostructures, we propose rutile-based IrO2/TiO2 superlattices as promising candidates for unconventional electronic properties. By means…

Strongly Correlated Electrons · Physics 2017-02-16 Xing Ming , Kunihiko Yamauchi , Tamio Oguchi , Silvia Picozzi

The layered 5d transition metal oxide Sr2IrO4 has been shown to host a novel Jeff=1/2 Mott spin orbit insulating state with antiferromagnetic ordering, leading to comparisons with the layered cuprates. Here we study the effect of…

Strongly Correlated Electrons · Physics 2015-03-20 S. Calder , G. -X. Cao , M. D. Lumsden , J. W. Kim , Z. Gai , B. C. Sales , D. Mandrus , A. D. Christianson

The spin-orbit entangled quantum states in 4d/5d compounds, e.g., the Jeff=1/2 and Jeff=3/2 states, have attracted great interests for their unique physical roles in unconventional superconductivity and topological states. Here, the key…

Strongly Correlated Electrons · Physics 2021-11-10 Yakui Weng , Shuai Dong

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

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…

Iridium-based 5d transition-metal oxides are attractive candidates for the study of correlated electronic states due to the interplay of enhanced crystal-field, Coulomb and spin-orbit interaction energies. At ambient pressure, these…

Strongly Correlated Electrons · Physics 2014-06-05 D. A. Zocco , J. J. Hamlin , B. D. White , B. J. Kim , J. R. Jeffries , S. T. Weir , Y. K. Vohra , J. W. Allen , M. B. Maple

We have investigated the pressure-induced spin-state transition in Co$^{2+}$ systems in terms of a competition between the Hund's exchange energy ($J$) and the crystal-field splitting ($\Delta_{CF}$). First, we show the universal…

Strongly Correlated Electrons · Physics 2016-01-19 Bongjae Kim , Kyoo Kim , B. I. Min

The metal-insulator and spin state transitions of CoO under high pressure are studied by using density functional theory combined with dynamical mean-field theory. Our calculations predict that the metal-insulator transition in CoO is a…

Strongly Correlated Electrons · Physics 2014-12-04 Li Huang , Yilin Wang , Xi Dai

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 report on the cubic double perovskite Ba2MgReO6 containing Re6+ ions with the 5d1 electron configuration. Resistivity, magnetization, and heat capacity measurements using single crystals show that the compound is a Mott insulator with a…

Strongly Correlated Electrons · Physics 2019-06-11 Daigorou Hirai , Zenji Hiroi

Discovery of new transition metal compounds with large spin orbit coupling (SOC) coexisting with strong electron-electron correlation among the $d$ electrons is essential for understanding the physics that emerges from the interplay of…

Strongly Correlated Electrons · Physics 2015-03-11 Turan Birol , Kristjan Haule

Effects of spin-orbit interactions in condensed matter are an important and rapidly evolving topic. Strong competition between spin-orbit, on-site Coulomb and crystalline electric field interactions in iridates drives exotic quantum states…

Strongly Correlated Electrons · Physics 2018-02-27 Gang Cao , Pedro Schlottmann

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

By means of density functional theory plus dynamical mean-field theory (DFT+DMFT) calculations and resonant inelastic x-ray scattering (RIXS) experiments, we investigate the high-pressure phases of the spin-orbit-coupled $J_{\rm{eff}}=3/2$…

It is commonly anticipated that an insulating state collapses in favor of an emergent metallic state at high pressures as the unit cell shrinks and the electronic bandwidth broadens to fill the insulating energy band gap. Here we report a…

‹ Prev 1 2 3 10 Next ›