Recent progress in the theory of bulk photovoltaic effect

IF 6.1 Q2 CHEMISTRY, PHYSICAL Chemical physics reviews Pub Date : 2022-06-01 DOI:10.1063/5.0101513
Zhenbang Dai, A. Rappe
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引用次数: 12

Abstract

The bulk photovoltaic effect (BPVE) occurs in solids with broken inversion symmetry and refers to DC generation due to uniform illumination, without the need of heterostructures or interfaces, a feature that is distinct from the traditional photovoltaic effect. Its existence has been demonstrated almost 50 years ago, but predictive theories only appeared in the last ten years, allowing for the identification of different mechanisms and the determination of their relative importance in real materials. It is now generally accepted that there is an intrinsic mechanism that is insensitive to scattering, called shift current, where first-principles calculations can now give highly accurate predictions. Another important but more extrinsic mechanism, called ballistic current, is also attracting a great deal of attention, but due to the complicated scattering processes, its numerical calculation for real materials is only made possible quite recently. In addition, an intrinsic ballistic current, usually referred to as injection current, will appear under circularly polarized light and has wide application in experiments. In this review, experiments that are pertinent to the theory development are reviewed, and a significant portion is devoted to discussing the recent progress in the theories of BPVE and their numerical implementations. As a demonstration of the capability of the newly developed theories, a brief review of the materials' design strategies enabled by the theory development is given. Finally, remaining questions in the BPVE field and possible future directions are discussed to inspire further investigations.
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体光伏效应理论的最新进展
体光伏效应(BPVE)发生在反转对称性破坏的固体中,指的是由于均匀照明而产生的直流电,而不需要异质结构或界面,这一特征与传统的光伏效应不同。它的存在已经被证明了将近50 几年前,但预测理论直到最近十年才出现,允许识别不同的机制并确定它们在真实材料中的相对重要性。现在人们普遍认为,存在一种对散射不敏感的内在机制,称为偏移电流,其中第一性原理计算现在可以给出高度准确的预测。另一个重要但更外在的机制,称为弹道电流,也吸引了大量的关注,但由于散射过程的复杂性,它在真实材料中的数值计算直到最近才成为可能。此外,在圆偏振光下会出现一种固有的弹道电流,通常称为注入电流,在实验中有着广泛的应用。在这篇综述中,对与理论发展相关的实验进行了综述,其中很大一部分专门讨论了BPVE理论及其数值实现的最新进展。为了证明新发展的理论的能力,简要回顾了理论发展所促成的材料设计策略。最后,讨论了BPVE领域的剩余问题和未来可能的方向,以启发进一步的研究。
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