铁电性
压电
材料科学
非谐性
带隙
离子键合
二次谐波产生
光电子学
凝聚态物理
极化(电化学)
光子学
光学
电介质
物理
化学
离子
复合材料
物理化学
量子力学
激光器
作者
Rui Zu,Gyung Hyun Ryu,Kyle P. Kelley,Steven M. Baksa,Leonard C. Jacques,Bo Wang,Kevin Ferri,Jingyang He,Long‐Qing Chen,Ismaïla Dabo,Susan Trolier‐McKinstry,Jon‐Paul Maria,Venkatraman Gopalan
出处
期刊:
[Wiley]
日期:2023-05-24
卷期号:2 (12)
被引量:13
标识
DOI:10.1002/apxr.202300003
摘要
Abstract Multifunctionality as a paradigm requires materials exhibiting multiple superior properties. Integrating second‐order optical nonlinearity and large bandgap with piezoelectricity can, for example, enable broadband, strain‐tunable photonics. Though very different phenomena at distinct frequencies, both second‐order optical nonlinearity and piezoelectricity are third‐rank polar tensors present only in acentric crystal structures. However, simultaneously enhancing both phenomena is highly challenging since it involves competing effects with tradeoffs. Recently, a large switchable ferroelectric polarization of ≈80 μC cm −2 was reported in Zn 1 ‐x Mg x O films. Here, ferroelectric Zn 1 ‐x Mg x O is demonstrated to be a platform that hosts simultaneously a 30% increase in the electronic bandgap, a 50% enhancement in the second harmonic generation (SHG) coefficients, and a near 200% improvement in the piezoelectric coefficients over pure ZnO. These enhancements are shown to be due to a 400% increase in the electronic anharmonicity and a ≈200% decrease in the ionic anharmonicity with Mg substitution. Precisely controllable periodic ferroelectric domain gratings are demonstrated down to 800 nm domain width, enabling ultraviolet quasi‐phase‐matched optical harmonic generation as well as domain‐engineered piezoelectric devices.
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