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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Wilson's numerical renormalization group calculation of the Anderson-Holstein model: Phonon propagator
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Wilson's numerical renormalization group calculation of the Anderson-Holstein model: Phonon propagator

机译:威尔逊的Anderson-Holstein模型的数值重归一化组计算:声子传播子

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We study the symmetric Anderson-Holstein (AH) model at zero temperature with Wilson's numerical renormalization group (NRG) technique to study the interplay between the electron-electron and electron-phonon interactions. An improved method for calculating the phonon propagator using the NRG technique is presented and applied to the AH model as the onsite Coulomb repulsion U and electron-phonon coupling constant g are varied. As g is increased, the phonon propagator is successively renormalized, and for g greater than or equal to g(co) crosses over to the regime where the mode splits into two components, one of which approaches back to the bare frequency and the other develops into a soft mode. The initial renormalization of the phonon mode, as g is increased from 0, can be either positive or negative depending on U and the hybridization Delta. [References: 10]
机译:我们使用威尔逊数值重归一化组(NRG)技术研究零温度下的对称Anderson-Holstein(AH)模型,以研究电子-电子与电子-声子相互作用之间的相互作用。提出了一种使用NRG技术计算声子传播系数的改进方法,并将其应用于AH模型,因为它会改变现场库仑排斥力U和电子声子耦合常数g。随着g的增加,声子传播子会连续地重新归一化,并且当g大于或等于g(co)时,过渡到该模式分裂为两个分量的状态,其中一个返回到裸频率,另一个发展进入软模式。当g从0增加时,声子模式的初始重整化可以是正值也可以是负值,具体取决于U和杂交Delta。 [参考:10]

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