The disordered induced interaction and the phase diagram of cuprates

被引:15
作者
de Mello, E. V. L. [1 ]
Kasal, R. B. [1 ]
机构
[1] Univ Fed Fluminense, Inst Fis, BR-24210340 Niteroi, RJ, Brazil
来源
PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS | 2012年 / 472卷 / 01期
关键词
Cuprates superconductors; Phase diagram; Phase separation 74.20.-z; 74.25.Dw; 74.72.Hs; 64.60.Cn; ANGLE-RESOLVED PHOTOEMISSION; ELECTRONIC-STRUCTURE; CUO2; PLANE; SUPERCONDUCTORS; RESISTIVITY; DEPENDENCE; PSEUDOGAP; ENERGY; HOLES; GAP;
D O I
10.1016/j.physc.2011.10.010
中图分类号
O59 [应用物理学];
学科分类号
摘要
There are processes in nature that resemble a true force but arise due to the minimization of the local energy. The most well-known case is the exchange interaction that leads to magnetic order in some materials. We discovered a new similar process occurring in connection with an electronic phase separation transition that leads to charge inhomogeneity in cuprate superconductors. The minimization of the local free energy, described here by the Cahn-Hilliard diffusion equation, drives the charges into regions of low and high densities. This motion leads to an effective potential with twofold effect: creation of tiny isolated regions or micrograins, and two-body attraction, which promotes local or intra-grain superconducting pairing. Consequently, as in granular superconductors, the superconducting transition appears in two steps. First, with local intra-grain superconducting amplitudes and, at lower temperature, the superconducting phase or resistivity transition is attained by intergrain Josephson coupling. We show here that this approach reproduces the main features of the cuprates phase diagram, gives a clear interpretation to the pseudogap phase and yields the position dependent local density of states gap Delta((r) over bar) measured by tunneling experiments. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:60 / 65
页数:6
相关论文
共 44 条
[1]  
Abhay N. Pasupathy, 2008, SCIENCE, V320, P196
[2]   TUNNELING BETWEEN SUPERCONDUCTORS [J].
AMBEGAOKAR, V ;
BARATOFF, A .
PHYSICAL REVIEW LETTERS, 1963, 10 (11) :486-&
[3]   Determination of the local lattice distortions in the CuO2 plane of La1.85Sr0.15CuO4 [J].
Bianconi, A ;
Saini, NL ;
Lanzara, A ;
Missori, M ;
Rossetti, T ;
Oyanagi, H ;
Yamaguchi, H ;
Oka, K ;
Ito, T .
PHYSICAL REVIEW LETTERS, 1996, 76 (18) :3412-3415
[4]   Neutron diffraction evidence of microscopic charge inhomogeneities in the CuO2 plane of superconducting La2-xSrxCuO4 (0≤x≤0.30) [J].
Bozin, ES ;
Kwei, GH ;
Takagi, H ;
Billinge, SJL .
PHYSICAL REVIEW LETTERS, 2000, 84 (25) :5856-5859
[5]   THEORY OF PHASE-ORDERING KINETICS [J].
BRAY, AJ .
ADVANCES IN PHYSICS, 1994, 43 (03) :357-459
[6]   Anomalous precursor diamagnetism at low reduced magnetic fields and the role of TC inhomogeneities in the superconductors Pb55In45 and underdoped La1.9Sr0.1CuO4 [J].
Cabo, Lucia ;
Soto, Felix ;
Ruibal, Mauricio ;
Mosqueira, Jesus ;
Vidal, Felix .
PHYSICAL REVIEW B, 2006, 73 (18)
[7]   FREE ENERGY OF A NONUNIFORM SYSTEM .1. INTERFACIAL FREE ENERGY [J].
CAHN, JW ;
HILLIARD, JE .
JOURNAL OF CHEMICAL PHYSICS, 1958, 28 (02) :258-267
[8]   Calculations for an inhomogeneous d-wave superconductor [J].
Caixeiro, E. S. ;
de Mello, E. V. L. ;
Troper, A. .
PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2007, 459 (1-2) :37-42
[9]   Observation of a d-wave nodal liquid in highly underdoped Bi2Sr2CaCu2O8+δ [J].
Chatterjee, U. ;
Shi, M. ;
Ai, D. ;
Zhao, J. ;
Kanigel, A. ;
Rosenkranz, S. ;
Raffy, H. ;
Li, Z. Z. ;
Kadowaki, K. ;
Hinks, D. G. ;
Xu, Z. J. ;
Wen, J. S. ;
Gu, G. ;
Lin, C. T. ;
Claus, H. ;
Norman, M. R. ;
Randeria, M. ;
Campuzano, J. C. .
NATURE PHYSICS, 2010, 6 (02) :99-103
[10]   Angle-resolved photoemission studies of the cuprate superconductors [J].
Damascelli, A ;
Hussain, Z ;
Shen, ZX .
REVIEWS OF MODERN PHYSICS, 2003, 75 (02) :473-541