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Projected SO(5) model and its application in high temperature superconductors.

机译:预估的SO(5)模型及其在高温超导体中的应用。

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摘要

A theory based on SO(5) symmetry was developed to understand the physics of high temperature superconductors in 1997 (Science, 275:1089, S. C. Zhang). This theory naturally unifies antiferromagnetism (AFM) and d-wave superconductivity (SC) and explains the complex phase diagram of the material. However, the original SO(5) theory does not consider the Gutzwiller constraints of no-double occupancy. By including this important physics, we develop a new model called Projected SO(5) model (PSO(5)) where all static correlation functions are exactly SO(5) symmetric. We discuss the signature of the projected SO(5) symmetry in dynamical correlation functions and show that this class of projected SO(5) models can give a realistic description of the global phase diagram of the high Tc superconductors and account for many of their physical properties.; The PSO(5) model is applied to explain the unusual properties of high temperature superconductors. First, we study the dispersion of pi resonance in the SC state in this model. Away from the commensurate momentum, the propagation of the pi resonance creates phase slips in the SC order parameter. This frustration effect leads to a strong dressing of the pi resonance and a downward dispersion away from the commensurate wave vector. Based on these results, we argue that the commensurate resonance and incommensurate magnetic fluctuations in the cuprates are continuously connected. Secondly, a theory of static and dynamic antiferromagnetic vortices in LSCO superconductors is developed based on PSO(5). It is shown that the AFM region induced by the vortices can be greater than the superconducting coherence length, due to the light effective mass of the dynamic AFM fluctuations at optimal doping, and close proximity to the AFM state in the underdoped regime. Finally, we study hole pair fluctuation around vortex core. A checkerboard pattern is found. We argue this prediction was exactly observed in recent STM experiments. Moreover, a microscopic state for the vortex phase of BSCO superconductors is also proposed and is argued that it can become a static phase at 1/8 doping with strong magnetic field.
机译:1997年,发展了一种基于SO(5)对称性的理论来理解高温超导体的物理原理(Science,275:1089,S. C. Zhang)。该理论自然地将反铁磁(AFM)和d波超导(SC)结合在一起,并解释了该材料的复杂相图。但是,原始的SO(5)理论没有考虑没有双重占用的Gutzwiller约束。通过包括这一重要物理学,我们开发了一个称为Projected SO(5)模型(PSO(5))的新模型,其中所有静态相关函数都完全是SO(5)对称的。我们讨论了动态相关函数中预计SO(5)对称性的签名,并表明此类预计SO(5)模型可以对高Tc超导体的整体相图进行现实描述,并说明它们的许多物理性质。属性。 PSO(5)模型用于解释高温超导体的异常特性。首先,我们在此模型中研究pi共振在SC状态下的弥散。除了相称的动量以外,π共振的传播还会在SC阶参数中产生相位滑移。这种挫折效应导致pi共振的强烈修整,并远离相称的波矢向下扩散。基于这些结果,我们认为铜酸盐中相应的共振和不合理的磁波动是连续连接的。其次,基于PSO(5)建立了LSCO超导体中静态和动态反铁磁涡旋的理论。结果表明,由于动态AFM波动在最佳掺杂时的光有效质量,并且在欠掺杂状态下非常接近AFM状态,因此涡流感应的AFM区域可以大于超导相干长度。最后,我们研究了涡流核心周围的孔对波动。找到一个棋盘图案。我们认为这种预测是在最近的STM实验中准确观察到的。此外,还提出了BSCO超导体涡旋相的微观状态,并认为在强磁场的1/8掺杂下它可以变成静态相。

著录项

  • 作者

    Hu, Jiangping.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 O49;
  • 关键词

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