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Thermally activated charge carriers and mid-infrared optical excitations in quarter-filled CDW systems

机译:四分之一填充CDW系统中的热活化电荷载体和中红外光激发

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The optical properties of the quarter-filled single-band CDW systems have been reexamined in the model with the electron-phonon coupling related to the variations of electron site energies. It appears that the indirect, electron-mediated coupling between phase phonons and external electromagnetic fields vanishes for symmetry reasons, at variance with the infrared selection rules used in the generally accepted microscopic theory. It is shown that the phase phonon modes and the electric fields couple directly, with the coupling constant proportional to the magnitude of the charge-density wave. The single-particle contributions to the optical conductivity tensor are determined for the ordered CDW state and the related weakly doped metallic state by means of the Bethe-Salpeter equations for elementary electron-hole excitations. It turns out that this gauge-invariant approach establishes a clear connection between the effective numbers of residual, thermally activated and bound charge carriers. Finally, the relation between these numbers and the activation energy of dc conductivity and the optical CDW gap scale is explained in the way consistent with the conductivity sum rules.
机译:在模型中重新检查了四分之一填充单频带CDW系统的光学特性,其电子-声子耦合与电子位能的变化有关。看来,由于对称性,相声子与外部电磁场之间的间接电子介导耦合消失了,这与普遍接受的微观理论中使用的红外选择规则不同。结果表明,相声子模式和电场直接耦合,耦合常数与电荷密度波的大小成正比。通过用于基本电子空穴激发的Bethe-Salpeter方程,确定有序CDW态和相关的弱掺杂金属态对光导张量的单粒子贡献。事实证明,这种规范不变的方法在有效数量的残余,热激活和结合的电荷载流子之间建立了明确的联系。最后,以与电导率和规则相一致的方式解释了这些数字与直流电导率的激活能量和光学CDW间隙标度之间的关系。

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