论文标题

来自第一原理计算的声子辅助弹道电流

Phonon-Assisted Ballistic Current From First Principles Calculations

论文作者

Dai, Zhenbang, Schankler, Aaron M., Gao, Lingyuan, Tan, Liang Z., Rappe, Andrew M.

论文摘要

大量光伏效应(BPVE)是指由于缺乏反转对称性的均匀散装物质在均匀的散装材料中引起的当前一代。除了深入研究的偏移电流外,弹道电流源自由于散射过程而引起的非对称载体的产生,还构成了对BPVE整体动力学模型的重要贡献。在这封信中,我们使用一种扰动方法来推导弹道电流的公式,该公式是由固有的电子 - 光子散射以一种可符合第一原理计算的形式。然后,我们使用量子机械密度功能理论来实施理论并计算典型BPVE材料的弹道电流\ ch {batio3}。弹道电流的幅度与移位电流的大小相当,并且总光谱(Shift Plus弹道)与实验测量的光电流非常吻合。此外,我们表明弹道电流对结构变化很敏感,这可能会受益于未来的光伏材料设计。

The bulk photovoltaic effect (BPVE) refers to current generation due to illumination by light in a homogeneous bulk material lacking inversion symmetry. In addition to the intensively studied shift current, the ballistic current, which originates from asymmetric carrier generation due to scattering processes, also constitutes an important contribution to the overall kinetic model of the BPVE. In this letter, we use a perturbative approach to derive a formula for the ballistic current resulting from the intrinsic electron-phonon scattering in a form amenable to first-principles calculation. We then implement the theory and calculate the ballistic current of the prototypical BPVE material \ch{BaTiO3} using quantum-mechanical density functional theory. The magnitude of the ballistic current is comparable to that of shift current, and the total spectrum (shift plus ballistic) agrees well with the experimentally measured photocurrents. Furthermore, we show that the ballistic current is sensitive to structural change, which could benefit future photovoltaic materials design.

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