arXiv · 1610.06589
Large bulk photovoltaic effect and spontaneous polarization of single-layer monochalcogenides
Abstract
We use a first-principles density functional theory approach to calculate the shift current and linear absorption of uniformly illuminated single-layer Ge and Sn monochalcogenides. We predict strong absorption in the visible spectrum and a large effective three-dimensional shift current ($\sim$100 $μ$A/V$^2$), larger than has been previously observed in other polar systems. Moreover, we show that the integral of the shift-current tensor is correlated to the large spontaneous effective three-dimensional electric polarization ($\sim$1.9 C/m$^2$). Our calculations indicate that the shift current will be largest in the visible spectrum, suggesting that these monochalcogenides may be promising for polar optoelectronic devices. A Rice-Mele tight-binding model is used to rationalize the shift-current response for these systems, and its dependence on polarization, in general terms with implications for other polar materials
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Tonatiuh Rangel, Benjamin M. Fregoso, Bernardo S. Mendoza, Takahiro Morimoto, Joel E. Moore, Jeffrey B. Neaton. 2017-08-27. Large bulk photovoltaic effect and spontaneous polarization of single-layer monochalcogenides. https://doi.org/10.1103/physrevlett.119.067402
Cite the original work for its findings. Save a collection to share your selection of sources.