...
首页> 外文期刊>International Journal of Quantum Chemistry >Quantum Dynamical Manifolds:Pair States in High-Temperature Superconductivity
【24h】

Quantum Dynamical Manifolds:Pair States in High-Temperature Superconductivity

机译:量子动力流形:高温超导中的双态

获取原文
获取原文并翻译 | 示例
           

摘要

The formation of Dirac pair states is shown to be crucial to the formation of the superconductive state.The properties of these Dirac bipolaron states is studied using a quantum dynamical extension of Cartan's moving frame approach to differential geometry.The overall geometric method,called quantum dynamical manifold theory (QDMT),is used to obtain the Dirac quasiparticle pair states (cooperons and potential cooperons or Dirac polaron pairs) in a polarizable medium appropriate for high-temperature superconductors (HTSCs).The matrix solutions of the equations describing the quantum dynamical manifold have a (flavor) symmetry also occurring in other closed-shell systems.By independently coupling each Dirac electron to a polarizable background in a semiclassic approximation,and solving the resulting quantum dynamical manifold equations (QDMEs),there are found new,nonperturbative,analytic solutions to the polaron pair (bipolaron) problem.This enables us to show that these cooperon states are closed shells with su(2) Lie algebraic symmetry.These are used to describe the cooperon system above and below the superconduction critical temperature.It is shown how these Dirac polaron pairs can be correlated for electron-electron interactions via virtual exciton exchange and screened Coulomb repulsion and then used in a homogeneous Bethe-Salpeter equation approach to study the onset of superconductivity of polaronic superconductors involving pairs of Dirac polarons.The relation of these states to the formation of a Bose-Einstein condensation (BEC) is discussed.To numerically investigate the question of the existence of high-temperature superconductivity mediated by the screened Coulomb and boson exchange of virtual excitons,a wave vector- and frequency-dependent effective interaction,V_(eff)(k,omega),between electron or hole polaron pairs in the electronic polaron model is used in lieu of a full pairing interaction,thereby simplifying the analysis of interacting pair states.We include the temperature dependence of the dielectric function,epsilon~(-1) (k,omega,T),for many-body systems of these quasiparticles.An effective mass method is employed to further simplify the computations.Analysis of the results shows that the attractive part of V_(eff) for the electronic polaron model persists to high temperature.Further,polarons not participating in the superconductive state produce a measurable Fermi surface even in the presence of the bipolaron BEC.
机译:Dirac对态的形成对超导态的形成至关重要。通过使用Cartan运动框架方法对微分几何的量子动力学扩展研究Dirac双极子态的性质。整体几何方法称为量子动力学流形理论(QDMT)用于获得适用于高温超导体(HTSC)的可极化介质中的狄拉克准粒子对态(合作伙伴和潜在合作伙伴或狄拉克极化子对)。描述量子动力学流形的方程的矩阵解在其他闭壳系统中也具有(味道)对称性。通过以半经典近似方式将每个Dirac电子独立耦合到极化背景,并求解由此产生的量子动力学流形方程(QDME),发现了新的,非扰动的,解析的极化子对(bipolaron)问题的解决方案。这使我们能够证明这些合作伙伴状态是具有su(2)Lie代数对称性的闭合壳,用于描述超导临界温度上下的偶极子体系,表明如何通过虚拟激子交换将这些Dirac极化子对与电子相互作用进行关联并筛选库仑斥力然后用于齐次Bethe-Salpeter方程方法中,研究涉及Dirac极化子对的极化超导体的超导性,讨论了这些状态与玻色-爱因斯坦凝聚(BEC)形成的关系。研究屏蔽的库仑和玻色子的虚拟激子交换,电子和空穴极化子对之间的波矢量和频率依赖性有效相互作用,V_(eff)(k,ω)介导的高温超导性的存在问题在电子极化子模型中使用来代替完全配对相互作用,从而简化了相互作用对状态的分析。这些准粒子的多体系统包括介电函数的温度依赖性,ε〜(-1)(k,omega,T)。有效质量方法被用来进一步简化计算。结果分析表明:电子极化子模型的V_(eff)的吸引力部分持续到高温。此外,即使在双极化子BEC的存在下,未参与超导状态的极化子也会产生可测量的费米表面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号