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通过虚拟多波段跃迁增强位移电流响应。

Enhancing shift current response via virtual multiband transitions.

作者信息

Chen Sihan, Chaudhary Swati, Refael Gil, Lewandowski Cyprian

机构信息

Kadanoff Center for Theoretical Physics, University of Chicago, Chicago, IL 60637 USA.

Department of Physics, California Institute of Technology, Pasadena, CA 91125 USA.

出版信息

Commun Phys. 2024;7(1):250. doi: 10.1038/s42005-024-01729-z. Epub 2024 Jul 20.

Abstract

Materials exhibiting a significant shift current response could potentially outperform conventional solar cell materials. The myriad of factors governing shift-current response, however, poses significant challenges in finding such strong shift-current materials. Here we propose a general design principle that exploits inter-orbital mixing to excite virtual multiband transitions in materials with multiple flat bands to achieve an enhanced shift current response. We further relate this design principle to maximizing Wannier function spread as expressed through the formalism of quantum geometry. We demonstrate the viability of our design using a 1D stacked Rice-Mele model. Furthermore, we consider a concrete material realization - alternating angle twisted multilayer graphene (TMG) - a natural platform to experimentally realize such an effect. We identify a set of twist angles at which the shift current response is maximized via virtual transitions for each multilayer graphene and highlight the importance of TMG as a promising material to achieve an enhanced shift current response at terahertz frequencies. Our proposed mechanism also applies to other 2D systems and can serve as a guiding principle for designing multiband systems that exhibit an enhanced shift current response.

摘要

表现出显著位移电流响应的材料可能会优于传统的太阳能电池材料。然而,众多控制位移电流响应的因素给寻找如此强大的位移电流材料带来了重大挑战。在此,我们提出一种通用设计原则,即利用轨道间混合来激发具有多个平带的材料中的虚拟多带跃迁,以实现增强的位移电流响应。我们进一步将此设计原则与通过量子几何形式主义所表达的最大化万尼尔函数展宽联系起来。我们使用一维堆叠的赖斯 - 梅勒模型证明了我们设计的可行性。此外,我们考虑一种具体的材料实现——交替角度扭曲多层石墨烯(TMG)——一个在实验上实现这种效应的天然平台。我们确定了一组扭曲角度,在这些角度下,每个多层石墨烯通过虚拟跃迁使位移电流响应最大化,并强调了TMG作为一种有前景的材料在太赫兹频率下实现增强位移电流响应的重要性。我们提出的机制也适用于其他二维系统,并可作为设计表现出增强位移电流响应的多带系统的指导原则。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bdb/11271335/561f02c5a006/42005_2024_1729_Fig1_HTML.jpg

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