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Related papers: Stripe phases in high-temperature superconductors

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The coupling of spin, charge and lattice degrees of freedom results in the emergence of novel states of matter across many classes of strongly correlated electron materials. A model example is unconventional superconductivity, which is…

We propose a model for a spatially modulated collective state of superconducting cuprates in which the electronic properties vary locally in space. In this model the regions of higher hole density (called stripes) are described as Luttinger…

Superconductivity · Physics 2007-05-23 Antonio H. Castro Neto

Unidirectional ("stripe") charge-density-wave order has now been established as a ubiquitous feature in the phase diagram of the cuprate high temperature (HT) superconductors, where it generally competes with superconductivity (SC).…

Strongly Correlated Electrons · Physics 2022-02-16 Hong-Chen Jiang , Steven A. Kivelson

It is conjectured that the anomalous spin dynamics observed in the normal state of cuprate superconductors might find its origin in a nearly ordered spin system which is kept in motion by thermally meandering charged domain walls.…

Superconductivity · Physics 2009-10-30 J. Zaanen , W. van Saarloos

When two molecular species with mutual affinity are mixed together, various self-assembled phases can arise at low temperature, depending on the shape of like and unlike interactions. Among them, stripes -- where layers of one type are…

Soft Condensed Matter · Physics 2026-01-21 Gabriele Costa , Santi Prestipino

The phase diagram of the copper-oxide chain as a function of density and the nearest-neighbour Coulomb interaction, V, is determined. Phase separation takes place above a critical value of $V$ when the Cu2+ to Cu+ valence fluctuations…

Condensed Matter · Physics 2007-05-23 C. Vermeulen , W. Barford , E. R. Gagliano

High temperature superconductivity is a property of doped antiferromagnetic insulators. The electronic structure is inhomogeneous on short length and time scales, and, as the temperature decreases, it evolves via two crossovers, before long…

Superconductivity · Physics 2009-10-30 V. J. Emery , S. A. Kivelson

We study a simple model for the metallic stripes found in $La_{1.6-x}Nd_{0.4}Sr_xCuO_4$: two chain Hubbard ladder embedded in a static antiferromagnetic environments. We consider two cases: a ``topological stripe'', for which the phase of…

Strongly Correlated Electrons · Physics 2009-10-30 Yu. A. Krotov , D. -H. Lee , A. V. Balatsky

For stripes in doped antiferromagnets, we find that the ratio of spin and charge correlation lenghts, $\xi_{s}/\xi_{c}$, provide a sharp criterion for determining the dominant form of disorder in the system. If stripes disorder is…

Strongly Correlated Electrons · Physics 2009-10-31 Oron Zachar

As a signature of competing correlations, stripes occur in a variety of strongly correlated systems, such as high temperature superconductors (SCs) and quantum Hall effect. We study a double layer SC in the presence of a parallel magnetic…

Superconductivity · Physics 2024-08-02 Uddalok Nag , Jonathan Schirmer , Enrico Rossi , C. -X. Liu , J. K. Jain

We report the direct imaging of a novel modulated flux striped domain phase in a nearly twin-free YBCO crystal. These domains arise from instabilities in the vortex structure within a narrow region of tilted magnetic fields at small angles…

Superconductivity · Physics 2015-06-18 V. K. Vlasko-Vlasov , J. R. Clem , A. E. Koshelev , U. Welp , W. K. Kwok

We present a minimal model of a doped Mott insulator that simultaneously supports antiferromagnetic stripes and d-wave superconductivity. We explore the implications for the global phase diagram of the superconducting cuprates. At the…

Superconductivity · Physics 2015-06-24 Ivar Martin , Gerardo Ortiz , A. V. Balatsky , A. R. Bishop

Recent scanning tunneling microscopy in the superconducting regime of two different cuprate families has revealed unidirectional bond-centered modulation in the local electronic density of states. Motivated by this result we investigate the…

Strongly Correlated Electrons · Physics 2008-07-14 Marcin Raczkowski

The high-temperature superconducting cuprates are governed by intertwined striped magnetic and charge orders in addition to superconductivity. Remarkably similar behavior has also been seen in numerical calculations for the Hubbard model…

Strongly Correlated Electrons · Physics 2022-02-25 Peizhi Mai , Seher Karakuzu , Giovanni Balduzzi , Steven Johnston , Thomas A. Maier

The theoretical approach proposed recently for description of redistribution of electronic charge in multilayered selectively doped systems is modified for a system with finite number of layers. A special attention is payed to the case of a…

Superconductivity · Physics 2013-05-29 V. M. Loktev , Yu. G. Pogorelov

Striped phases, in which spin, charge, and pairing correlations vary inhomogeneously in the CuO_2 planes, are a known experimental feature of cuprate superconductors, and are also found in a variety of numerical treatments of the two…

Strongly Correlated Electrons · Physics 2014-10-02 R. Mondaini , T. Ying , T. Paiva , R. T. Scalettar

In many antiferromagnetic, quasi-two-dimensional materials, doping with holes leads to "stripe" phases, in which the holes congregate along antiphase domain walls in the otherwise antiferromagnetic texture. Using a suitably parametrized…

Superconductivity · Physics 2007-05-23 E. W. Carlson , D. X. Yao , D. K. Campbell

We show that the main features of the cuprates superconductors phase diagram can be derived considering the disorder as a key property of these materials. Our basic point is that the high pseudogap line is an onset of phase separation which…

Superconductivity · Physics 2009-11-11 E. V. L. de Mello , D. H. N. Dias , Otton Teixeira da Silveira Filho

Complex phase diagrams are generic feature of quantum materials that display high temperature superconductivity. In addition to d-wave superconductivity (or other unconventional states), these phase diagrams typically include various forms…

Superconductivity · Physics 2025-07-29 Eduardo Fradkin

We use a holographic theory to model and study the competition of four phases: an antiferromagnetic phase, a superconducting phase, a metallic phase and a striped phase, using as control parameters temperature and a doping-like parameter.…

Strongly Correlated Electrons · Physics 2016-03-23 Elias Kiritsis , Li Li
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