Literature DB >> 22735443

Spatial complexity due to bulk electronic nematicity in a superconducting underdoped cuprate.

B Phillabaum1, E W Carlson, K A Dahmen.   

Abstract

Surface probes such as scanning tunnelling microscopy have detected complex electronic patterns at the nanoscale in many high-temperature superconductors. In cuprates, the pattern formation is associated with the pseudogap phase, a precursor to the high-temperature superconducting state. Rotational symmetry breaking of the host crystal in the form of electronic nematicity has recently been proposed as a unifying theme of the pseudogap phase. However, the fundamental physics governing the nanoscale pattern formation has not yet been identifed. Here we introduce a new set of methods for analysing strongly correlated electronic systems, including the effects of both disorder and broken symmetry. We use universal cluster properties extracted from scanning tunnelling microscopy studies of cuprate superconductors to identify the fundamental physics controlling the complex pattern formation. Because of a delicate balance between disorder, interactions, and material anisotropy, we find that the electron nematic is fractal in nature, and that it extends throughout the bulk of the material.

Mesh:

Year:  2012        PMID: 22735443     DOI: 10.1038/ncomms1920

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


  18 in total

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Authors:  C Howald; H Eisaki; N Kaneko; A Kapitulnik
Journal:  Proc Natl Acad Sci U S A       Date:  2003-08-11       Impact factor: 11.205

2.  Avalanches, Barkhausen noise, and plain old criticality.

Authors: 
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3.  Surface critical behavior in fixed dimensions d<4: Nonanalyticity of critical surface enhancement and massive field theory approach.

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4.  Intra-unit-cell electronic nematicity of the high-T(c) copper-oxide pseudogap states.

Authors:  M J Lawler; K Fujita; Jhinhwan Lee; A R Schmidt; Y Kohsaka; Chung Koo Kim; H Eisaki; S Uchida; J C Davis; J P Sethna; Eun-Ah Kim
Journal:  Nature       Date:  2010-07-15       Impact factor: 49.962

5.  Broken rotational symmetry in the pseudogap phase of a high-T(c) superconductor.

Authors:  R Daou; J Chang; David Leboeuf; Olivier Cyr-Choinière; Francis Laliberté; Nicolas Doiron-Leyraud; B J Ramshaw; Ruixing Liang; D A Bonn; W N Hardy; Louis Taillefer
Journal:  Nature       Date:  2010-01-28       Impact factor: 49.962

6.  Particle-hole asymmetry in doped mott insulators: implications for tunneling and photoemission spectroscopies.

Authors:  Mohit Randeria; Rajdeep Sensarma; Nandini Trivedi; Fu-Chun Zhang
Journal:  Phys Rev Lett       Date:  2005-09-19       Impact factor: 9.161

7.  Using disorder to detect locally ordered electron nematics via hysteresis.

Authors:  E W Carlson; K A Dahmen
Journal:  Nat Commun       Date:  2011-07-05       Impact factor: 14.919

8.  An intrinsic bond-centered electronic glass with unidirectional domains in underdoped cuprates.

Authors:  Y Kohsaka; C Taylor; K Fujita; A Schmidt; C Lupien; T Hanaguri; M Azuma; M Takano; H Eisaki; H Takagi; S Uchida; J C Davis
Journal:  Science       Date:  2007-02-08       Impact factor: 47.728

9.  Quantum magnetic excitations from stripes in copper oxide superconductors.

Authors:  J M Tranquada; H Woo; T G Perring; H Goka; G D Gu; G Xu; M Fujita; K Yamada
Journal:  Nature       Date:  2004-06-03       Impact factor: 49.962

10.  Electronic liquid crystal state in the high-temperature superconductor YBa2Cu3O6.45.

Authors:  V Hinkov; D Haug; B Fauqué; P Bourges; Y Sidis; A Ivanov; C Bernhard; C T Lin; B Keimer
Journal:  Science       Date:  2008-01-10       Impact factor: 47.728

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  11 in total

1.  Inhomogeneity of charge-density-wave order and quenched disorder in a high-Tc superconductor.

Authors:  G Campi; A Bianconi; N Poccia; G Bianconi; L Barba; G Arrighetti; D Innocenti; J Karpinski; N D Zhigadlo; S M Kazakov; M Burghammer; M v Zimmermann; M Sprung; A Ricci
Journal:  Nature       Date:  2015-09-17       Impact factor: 49.962

2.  Commensurate 4a0-period charge density modulations throughout the Bi2Sr2CaCu2O8+x pseudogap regime.

Authors:  Andrej Mesaros; Kazuhiro Fujita; Stephen D Edkins; Mohammad H Hamidian; Hiroshi Eisaki; Shin-Ichi Uchida; J C Séamus Davis; Michael J Lawler; Eun-Ah Kim
Journal:  Proc Natl Acad Sci U S A       Date:  2016-10-20       Impact factor: 11.205

3.  Optimum inhomogeneity of local lattice distortions in La2CuO(4+y).

Authors:  Nicola Poccia; Alessandro Ricci; Gaetano Campi; Michela Fratini; Alessandro Puri; Daniele Di Gioacchino; Augusto Marcelli; Michael Reynolds; Manfred Burghammer; Naurang Lal Saini; Gabriel Aeppli; Antonio Bianconi
Journal:  Proc Natl Acad Sci U S A       Date:  2012-09-07       Impact factor: 11.205

4.  Quenched disorder and vestigial nematicity in the pseudogap regime of the cuprates.

Authors:  Laimei Nie; Gilles Tarjus; Steven Allan Kivelson
Journal:  Proc Natl Acad Sci U S A       Date:  2014-05-05       Impact factor: 11.205

5.  Electronic nematicity in Sr2RuO4.

Authors:  Jie Wu; Hari P Nair; Anthony T Bollinger; Xi He; Ian Robinson; Nathaniel J Schreiber; Kyle M Shen; Darrell G Schlom; Ivan Božović
Journal:  Proc Natl Acad Sci U S A       Date:  2020-05-04       Impact factor: 11.205

6.  Spontaneous breaking of rotational symmetry in copper oxide superconductors.

Authors:  J Wu; A T Bollinger; X He; I Božović
Journal:  Nature       Date:  2017-07-26       Impact factor: 49.962

7.  Electronic polymers and soft-matter-like broken symmetries in underdoped cuprates.

Authors:  M Capati; S Caprara; C Di Castro; M Grilli; G Seibold; J Lorenzana
Journal:  Nat Commun       Date:  2015-07-06       Impact factor: 14.919

8.  Scale-invariant magnetic textures in the strongly correlated oxide NdNiO3.

Authors:  Jiarui Li; Jonathan Pelliciari; Claudio Mazzoli; Sara Catalano; Forrest Simmons; Jerzy T Sadowski; Abraham Levitan; Marta Gibert; Erica Carlson; Jean-Marc Triscone; Stuart Wilkins; Riccardo Comin
Journal:  Nat Commun       Date:  2019-10-15       Impact factor: 14.919

9.  Inhomogeneous Kondo-lattice in geometrically frustrated Pr2Ir2O7.

Authors:  Mariam Kavai; Joel Friedman; Kyle Sherman; Mingda Gong; Ioannis Giannakis; Samad Hajinazar; Haoyu Hu; Sarah E Grefe; Justin Leshen; Qiu Yang; Satoru Nakatsuji; Aleksey N Kolmogorov; Qimiao Si; Michael Lawler; Pegor Aynajian
Journal:  Nat Commun       Date:  2021-03-02       Impact factor: 14.919

10.  Short range smectic order driving long range nematic order: example of cuprates.

Authors:  R S Markiewicz; J Lorenzana; G Seibold; A Bansil
Journal:  Sci Rep       Date:  2016-01-27       Impact factor: 4.379

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