Optical control of polarization in ferroelectric heterostructures

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作者
Tao Li
Alexey Lipatov
Haidong Lu
Hyungwoo Lee
Jung-Woo Lee
Engin Torun
Ludger Wirtz
Chang-Beom Eom
Jorge Íñiguez
Alexander Sinitskii
Alexei Gruverman
机构
[1] University of Nebraska,Department of Physics and Astronomy
[2] University of Nebraska,Department of Chemistry
[3] University of Wisconsin,Department of Materials Science and Engineering
[4] University of Luxembourg,Physics and Materials Science Research Unit
[5] Luxembourg Institute of Science and Technology,Department of Materials Research and Technology
来源
Nature Communications | / 9卷
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摘要
In the ferroelectric devices, polarization control is usually accomplished by application of an electric field. In this paper, we demonstrate optically induced polarization switching in BaTiO3-based ferroelectric heterostructures utilizing a two-dimensional narrow-gap semiconductor MoS2 as a top electrode. This effect is attributed to the redistribution of the photo-generated carriers and screening charges at the MoS2/BaTiO3 interface. Specifically, a two-step process, which involves formation of intra-layer excitons during light absorption followed by their decay into inter-layer excitons, results in the positive charge accumulation at the interface forcing the polarization reversal from the upward to the downward direction. Theoretical modeling of the MoS2 optical absorption spectra with and without the applied electric field provides quantitative support for the proposed mechanism. It is suggested that the discovered effect is of general nature and should be observable in any heterostructure comprising a ferroelectric and a narrow gap semiconductor.
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