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EFFECT OF DIMENSIONALITY AND ANISOTROPY ON THE HOLSTEIN POLARON

机译:维度和各向异性对荷斯坦极化素的影响

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We apply weak-coupling perturbation theory and strong-coupling perturbation theory to the Holstein molecular crystal model in order to elucidate the effects of anisotropy on polaron properties in D dimensions. The ground state energy is considered as a primary criterion through which to study the effects of anisotropy on the self-trapping transition, with particular attention given to shifting of the self-trapping line and the adiabatic critical point. The effects of dimensionality and anisotropy on electron-phonon correlations and polaronic mass enhancement are studied, with particular attention given to the polaron radius and the characteristics of quasi-1-D and quasi-2-D structures. Perturbative results are confirmed by selected comparisons with variational calculations and quantum Monte Carlo data.
机译:我们将弱耦合扰动理论和强耦合扰动理论应用于荷斯坦分子晶体模型,以阐明各向异性对D尺寸的极性特性的影响。地位能量被认为是研究各向异性对自捕获过渡的影响的主要标准,特别是对自捕集线和绝热临界点的移位特别关注。研究了维度和各向异性对电子 - 声子相关和极化质量增强的影响,特别是对极化子半径和准1-D和准二2-D结构的特性。通过各种分析计算和量子蒙特卡罗数据的选择进行了扰动结果。

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