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首页> 外文期刊>Physical review letters >Electron-Phonon Coupling from Ab Initio Linear-Response Theory within the GW Method: Correlation-Enhanced Interactions and Superconductivity in Ba_(1-x)K_xBiO_3
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Electron-Phonon Coupling from Ab Initio Linear-Response Theory within the GW Method: Correlation-Enhanced Interactions and Superconductivity in Ba_(1-x)K_xBiO_3

机译:来自GW方法中的AB Initio线性响应理论的电子 - 声子耦合:BA_(1-x)K_XBIO_3中的相关 - 增强的相互作用和超导

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We present a new first-principles linear-response theory of changes due to perturbations in the quasiparticle self-energy operator within the GW method. This approach, named GW perturbation theory (GWPT), is applied to calculate the electron-phonon (e-ph) interactions with the full inclusion of the GW nonlocal, energy-dependent self-energy effects, going beyond density-functional perturbation theory. Avoiding limitations of the frozen-phonon technique, GWPT gives access to e-ph matrix elements at the GW level for all phonons and scattering processes, and the computational cost scales linearly with the number of phonon modes (wave vectors and branches) investigated. We demonstrate the capabilities of GWPT by studying the e-ph coupling and superconductivity in Ba0.6K0.4BiO3. We show that many-electron correlations significantly enhance the e-ph interactions for states near the Fermi surface, and explain the observed high superconductivity transition temperature of Ba(0.6)K(0.4)BiO(3 )as well as its doping dependence.
机译:我们提出了一种新的第一原理,由于GW方法内的Quasiparticle自我能量操作员扰动导致的变化的线性响应理论。这种方法是名为GW扰动理论(GWPT)的方法,用于计算与全部包含GW非函数,能量依赖的自能效应的电子 - 声子(E-PH)相互作用,超越密度功能扰动理论。避免冻结 - 声子技术的限制,GWPT可以访问所有声子和散射过程的GW电平的E-PH矩阵元件,并且计算成本与所研究的声子模式(波矢量和分支)线性缩放。我们通过研究Ba0.6k0.4bio3中的E-pH偶联和超导性来证明GWPT的能力。我们表明,许多电子相关性显着增强了Fermi表面附近的状态的E-pH相互作用,并解释了观察到的Ba(0.6)K(0.4)生物(3)的高超导转变温度以及其掺杂依赖性。

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