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Detecting symmetry-breaking hidden orders with conventional probes has been a long-standing challenge in the field of magnetism. Higher-rank multipolar ordering $-$ anisotropic charge and magnetization distributions arising from a…

Mesoscale and Nanoscale Physics · Physics 2024-09-13 Sopheak Sorn , Adarsh S. Patri

In electronic solids with strong spin-orbit interactions (SOIs), the spin and orbital degrees of freedom of an electron are quantum mechanically entangled, which may result in an exotic multipolar order instead of a conventional dipolar…

Strongly Correlated Electrons · Physics 2020-07-01 Daigorou Hirai , Hajime Sagayama , Shang Gao , Hiroyuki Ohsumi , Gang Chen , Taka-hisa Arima , Zenji Hiroi

Coulomb repulsion between electrons moving on a frustrated lattice can give rise, at simple commensurate electronic densities, to exotic insulating phases of matter. Such a phenomenon is illustrated using an extended t--J model on a planar…

Strongly Correlated Electrons · Physics 2008-04-24 Didier Poilblanc

Though most fermionic Mott insulators order at low temperatures, ordering is ancillary to their insulating behaviour. Our emphasis here is on disentangling ordering from the intrinsic strongly correlated physics of a doped half-filled band.…

Strongly Correlated Electrons · Physics 2009-11-10 Tudor D. Stanescu , Philip Phillips

In many condensed matter systems, long range order emerges at low temperatures as thermal fluctuations subside. In the presence of competing interactions or quenched disorder, however, some systems can show unusual configurations that…

Disordered Systems and Neural Networks · Physics 2025-10-02 Yang Zhang , Suk Hyun Sung , Colin B. Clement , Sang-Wook Cheong , Ismail El Baggari

When matter is cooled from high temperatures, collective instabilities develop amongst its constituent particles that lead to new kinds of order. An anomaly in the specific heat is a classic signature of this phenomenon. Usually the…

Strongly Correlated Electrons · Physics 2009-11-07 P. Chandra , P. Coleman , J. A. Mydosh , V. Tripathi

The nature of order in low-temperature phases of some materials is not directly seen by experiment. Such "hidden orders" (HO) may inspire decades of research to identify the mechanism underlying those exotic states of matter. In insulators,…

Strongly Correlated Electrons · Physics 2021-04-05 Leonid V. Pourovskii , Sergii Khmelevskyi

We investigate spin-order of ultracold bosons in an optical lattice by means of Dynamical Mean-Field Theory. A rich phase diagram with anisotropic magnetic order is found, both for the ground state and at finite temperatures. Within the…

Other Condensed Matter · Physics 2009-12-15 A. Hubener , M. Snoek , W. Hofstetter

An exotic phase, the bond order wave, characterized by the spontaneous dimerization of the hopping, has been predicted to exist sandwiched between the band and Mott insulators in systems described by the ionic Hubbard model. Despite growing…

Quantum Gases · Physics 2017-12-14 Karla Loida , Jean-Sebastien Bernier , Roberta Citro , Edmond Orignac , Corinna Kollath

We investigate an experimental toy-model system of a pseudospin-half square-lattice Hubbard Hamiltonian in [(SrIrO3)1/(CaTiO3)1] to include both nontrivial complex hopping and moderate electronic correlation. While the former induces…

We uncover four new spin-charge ordered ground states in the strong coupling limit of the Kondo lattice model on triangular geometry. Two of the states at one-third electronic filling ($n=1/3$) consist of decorated ferromagnetic chains…

Strongly Correlated Electrons · Physics 2015-06-23 Sahinur Reja , Rajyavardhan Ray , Jeroen van den Brink , Sanjeev Kumar

The low-temperature structure of A1C60 (A=K, Rb) is an ordered array of polymerized C60 chains, with magnetic properties that suggest a non-metallic ground state. We study the paramagnetic state of this phase using first-principles…

mtrl-th · Physics 2008-02-03 S. C. Erwin , G. V. Krishna , E. J. Mele

The low-temperature structure of A1C60 (A=K, Rb) is an ordered array of polymerized C60 chains, with magnetic properties that suggest a non-metallic ground state. We study the paramagnetic state of this phase using first-principles…

Condensed Matter · Physics 2009-10-22 S. C. Erwin , G. V. Krishna , E. J. Mele

We study the phase diagram of the asymmetric Hubbard model (AHM), which is characterized by different values of the hopping for the two spin projections of a fermion or equivalently, two different orbitals. This model is expected to provide…

Quantum Gases · Physics 2015-06-12 E. A. Winograd , R. Chitra , M. J. Rozenberg

The three dimensional perovskite manganites in the range of hole-doping $x > 0.5$ are studied in detail using a double exchange model with degenerate $e_g$ orbitals including intra- and inter-orbital correlations and near-neighbour Coulomb…

Strongly Correlated Electrons · Physics 2009-11-10 Tulika Maitra , A. Taraphder

By constructing an effective model based on recently calculated \emph{ab }initio bare interaction parameters, we study the phase diagram of alkali doped fullerides as a function of temperature and internal pressure. We use a slave-rotor…

Strongly Correlated Electrons · Physics 2019-10-08 Theja N. De Silva

The self-organization of strongly interacting electrons into superlattice structures underlies the properties of many quantum materials. How these electrons arrange within the superlattice dictates what symmetries are broken and what ground…

Despite more than half a century of studies in heavy-fermion compounds, a full understanding of the various possible magnetic ordering phenomena is still far from complete. Some heavy-fermion materials show so-called hidden-order phases,…

Strongly Correlated Electrons · Physics 2018-11-27 Pavlo Y. Portnichenko

In the last years there have been measurements of energy independent modulations in underdoped cuprates via scanning tunelling microscopy. These modulations of around 4 lattice constants occur near vortex cores in samples with and without…

Superconductivity · Physics 2007-05-23 Zaira Nazario , David I. Santiago

The orbital degree of freedom in rare-earth nickelates is typically inactive across the temperature-driven metal-insulator transition, where the system develops two inequivalent Ni sites associated with Ni-O bond disproportionation and…

Strongly Correlated Electrons · Physics 2026-04-22 Sangeeta Rajpurohit , Sheikh Rubaiat Ul Haque , Aaron M. Lindenberg , Peter E. Blöchl , Tadashi Ogitsu
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