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第一性原理计算铁电体中的位移电流光伏效应。

First principles calculation of the shift current photovoltaic effect in ferroelectrics.

机构信息

The Makineni Theoretical Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.

出版信息

Phys Rev Lett. 2012 Sep 14;109(11):116601. doi: 10.1103/PhysRevLett.109.116601. Epub 2012 Sep 12.

Abstract

We calculate the bulk photovoltaic response of the ferroelectrics BaTiO(3) and PbTiO(3) from first principles by applying the "shift current" theory to the electronic structure from density functional theory. The first principles results for BaTiO(3) reproduce experimental photocurrent direction and magnitude as a function of light frequency, as well as the dependence of current on light polarization, demonstrating that shift current is the dominant mechanism of the bulk photovoltaic effect in BaTiO(3). Additionally, we analyze the relationship between response and material properties in detail. Photocurrent does not depend simply or strongly on the magnitude of material polarization, as has been previously assumed; instead, electronic states with delocalized, covalent bonding that is highly asymmetric along the current direction are required for strong shift current enhancements. The complexity of the response dependence on both external and material parameters suggests applications not only in solar energy conversion, but in photocatalysis and sensor and switch type devices as well.

摘要

我们通过将“位移电流”理论应用于从密度泛函理论得到的电子结构,从第一性原理计算了铁电体 BaTiO(3) 和 PbTiO(3) 的体光伏响应。对于 BaTiO(3),第一性原理的结果再现了实验中光电流方向和幅度随光频率的变化,以及电流对光偏振的依赖性,这表明位移电流是 BaTiO(3) 体光伏效应的主要机制。此外,我们还详细分析了响应与材料性质之间的关系。光电流并不像以前假设的那样简单或强烈地取决于材料极化的大小;相反,对于强位移电流增强,需要具有沿电流方向高度不对称的离域、共价键的电子态。响应对外部和材料参数的依赖性的复杂性表明,其应用不仅在太阳能转换中,而且在光催化以及传感器和开关类型器件中也有应用。

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