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Related papers: Charge order, orbital order, and electron localiza…

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We have analyzed the experimental evidence of charge and orbital ordering in La0.5Sr1.5MnO4 using first principles band structure calculations. Our results suggest the presence of two types of Mn sites in the system. One of the Mn sites…

Strongly Correlated Electrons · Physics 2009-11-07 Priya Mahadevan , K. Terakura , D. D. Sarma

The metal-insulator transition in VO2 was investigated using the three-band Hubbard model, in which the degeneracy of the 3d orbitals, the on-site Coulomb and exchange interactions, and the effects of lattice distortion were considered. A…

Condensed Matter · Physics 2009-11-10 Arata Tanaka

The microscopic mechanism of the metal-insulator transition is studied by orbital-resolved 51V NMR spectroscopy in a prototype of the quasi-one-dimensional system V6O13. We uncover that the transition involves a site-selective d orbital…

Strongly Correlated Electrons · Physics 2015-04-24 Yasuhiro Shimizu , Satoshi Aoyama , Takaaki Jinno , Masayuki Itoh , Yutaka Ueda

The spin density wave instabilities in the quasi-one-dimensional metal (TMTSF)_2ClO_4 are studied in the framework a matrix random phase approximation for intra-band and inter-band order parameters. Depending on the anion ordering potential…

Strongly Correlated Electrons · Physics 2009-11-07 D. Zanchi , A. Bjelis

A superposition of the Pauli and orbital coupling of a high magnetic field to charge carriers in a charge-density-wave (CDW) system is proposed to give rise to transitions between subphases with quantized values of the CDW wavevector. By…

Strongly Correlated Electrons · Physics 2016-08-31 D. Andres , M. V. Kartsovnik , P. D. Grigoriev , W. Biberacher , H. Mueller

Entanglement underpins quantum information processing and computing, yet its experimental quantification in complex, many-body condensed matter systems remains a considerable challenge. Here, we reveal a highly entangled electronic phase…

We investigate the nature and origin of the metal-insulator transition in Sr2Ru1-xTixO4 as a function of increasing Ti content (x). Employing detailed core, valence, and conduction band studies with x-ray and ultraviolet photoelectron…

Strongly Correlated Electrons · Physics 2009-11-11 Sugata Ray , D. D. Sarma , R. Vijayaraghavan

The Fe intercalated transition metal dichalcogenide (TMD), Fe$_{1/3}$NbS$_2$, exhibits remarkable resistance switching properties and highly tunable spin ordering phases due to magnetic defects. We conduct synchrotron X-ray scattering…

Magnetic kagome metals, in which topologically non-trivial band structures and electronic correlation are intertwined, have recently emerged as an exciting platform to explore exotic correlated topological phases, that are usually not found…

In solids, strong repulsion between electrons can inhibit their movement and result in a "Mott" metal-to-insulator transition (MIT), a fundamental phenomenon whose understanding has remained a challenge for over 50 years. A key issue is how…

The interplay between band topology and magnetic order plays a key role in quantum states of matter. MnBi2Te4, a van der Waals magnet, has recently emerged as an exciting platform for exploring Chern insulator physics. Its layered…

The transition metal spinel MgTi$_2$O$_4$ undergoes a metal-insulator transition on cooling below $T_{M-I} = 260$ K. A sharp reduction of the magnetic susceptibility below $T_{M-I}$ suggests the onset of a magnetic singlet state. Using…

Condensed Matter · Physics 2009-11-10 M. Schmidt , W. Ratcliff , P. G. Radaelli , K. Refson , N. M. Harrison , S. W. Cheong

We report a study of spin waves in hole-doped ferromagnetic La7/8Sr1/8MnO3, in the metallic state (165K) below TC (181K) and through the puzzling metal-insulator transition which occurs at TO'O''=159K. They reveal very unusual excitations.…

Strongly Correlated Electrons · Physics 2007-05-23 M. Hennion , F. Moussa , P. Lehouelleur , P. Reutler , A. Revcolevschi

Emergent magnetic states at oxide interfaces arise from the interplay of charge transfer, orbital reconstruction, and dimensional confinement, offering a route to engineered correlated-electron behavior in nanoscale spintronic materials.…

The Verwey transition in magnetite (Fe3O4 ) is the prototypical metal-insulator transition and has eluded a comprehensive explanation for decades. A major element of the challenge is the complex interplay between charge order and lattice…

Strongly Correlated Electrons · Physics 2022-11-23 Wei Wang , Junjie Li , Lijun Wu , Jennifer Sears , Fuhao Ji , Xiaozhe Shen , Alex H. Reid , Jing Tao , Ian K. Robinson , Yimei Zhu , Mark P. M. Dean

The family of molecular conductors TMTTF/TMTSF-X demonstrates almost all known electronic phases in parallel with a set of weak structural modifications of anion ordering and mysterious structureless transitions. Only in early 2000's their…

Strongly Correlated Electrons · Physics 2007-05-23 Serguei Brazovskii

To elucidate different photoinduced melting dynamics of charge orders observed in quasi-two-dimensional organic conductors $ \theta $-(BEDT-TTF)$_2$RbZn(SCN)$_4$ and $ \alpha $-(BEDT-TTF)$_2$I$_3$…

Strongly Correlated Electrons · Physics 2010-03-11 Satoshi Miyashita , Yasuhiro Tanaka , Shinichiro Iwai , Kenji Yonemitsu

Electronic structure calculations of the Verwey ground state of magnetite, Fe3O4, using density functional theory with treatment of on-site Coulomb interactions (DFT+U scheme) are reported. These calculations use the recently-published…

Strongly Correlated Electrons · Physics 2013-01-16 Mark Senn , Ingo Loa , Jon P. Wright , J. Paul Attfield

We present electronic structure calculations for the one-dimensional magnetic chain compounds Ca_3CoRhO_6 and Ca_3FeRhO_6. The calculations are based on density functional theory and the local density approximation. We use the augmented…

Strongly Correlated Electrons · Physics 2008-01-26 V. Eyert , U. Schwingenschloegl , C. Hackenberger , T. Kopp , R. Fresard , U. Eckern

Magnetic topological systems based on MnBi2Te4 have recently attracted significant attention due to their rich interplay between magnetism and topological electronic states. In this work, using density functional theory (DFT), we…