Single-Crystalline ZnO Microwire two-Photon Absorption Photodetector

Zhiyang Chen, Anqi Chen, Yanyan Wu, Guanlin Lou, Yuhao Ren, Jinyu Li, Yunfeng Liang, Hai Zhu, Xuchun Gui, Zikang Tang
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Abstract

Identifying strong third-order nonlinearities and low nonlinear optical losses, including photonic crystals and plasmonic structure1–4, are crucial for developing optoelectronic devices and nanophotonics technologies. We presented large enhancement of degenerate two-photon absorption through hexagonal cavity resonance in single-crystalline ZnO microwire involved Fabry-Perot (FP) cavity and whispering gallery mode (WGM) cavity. We reported it is feasible to fabricate degenerate two-photon absorption single microwire photodetector. The device photocurrent performed a typical parabola curve with the increasing of incident irradiance due to third-order nonlinearity. We experimentally demonstrated two-photon absorption enhancement resonated in WGM cavity is more excellent than that in FP cavity for the highly confined optical fields ability at room temperature.
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单晶ZnO微线双光子吸收光电探测器
识别强三阶非线性和低非线性光学损耗,包括光子晶体和等离子体结构1 - 4,对于开发光电器件和纳米光子学技术至关重要。在单晶ZnO微细线中,通过法布里-珀罗(FP)腔和低语廊模式(WGM)腔的六方腔共振,研究了简并双光子吸收的显著增强。本文报道了制备简并双光子吸收单微线光电探测器是可行的。由于三阶非线性,器件光电流随入射辐照度的增加呈典型的抛物线曲线。实验证明,在室温下,双光子吸收增强在WGM腔中共振比在FP腔中共振更具有高受限光场能力。
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