Liu Leshu, Liu Ken, Liu Ning, Zhu Zhihong, Zhang Jianfa
College of Advanced Interdisciplinary Studies & Hunan Provincial Key Laboratory of Novel Nano-Optoelectronic Information Materials and Devices, National University of Defense Technology, Changsha 410073, China.
Nanomaterials (Basel). 2022 Oct 31;12(21):3849. doi: 10.3390/nano12213849.
Lithium niobate is an excellent optoelectronic and nonlinear material, which plays an important role in integrated optics. However, lithium niobate is difficult to etch due to its very stable chemical nature, and the microstructure of lithium niobate's metasurface is generally of subwavelength, which further increases its processing difficulty. Here, by using Ar-based inductively coupled plasma etching and KOH wet etching, we improve the etching quality and fabricate a Fano-resonant metasurface based on lithium niobate on insulator, which has a very high reflectivity of 92% at near-infrared wavelength and the potential of becoming a high-reflectivity film. In addition, to evaluate the practical performance of the metasurface, we constructed a Fabry-Perot cavity by using it as a cavity mirror, whose reflection spectrum shows a finesse of 38. Our work paves the way for the development of functional metasurfaces and other advanced photonic devices based on lithium niobate on insulator.
铌酸锂是一种优异的光电和非线性材料,在集成光学中发挥着重要作用。然而,铌酸锂因其非常稳定的化学性质而难以蚀刻,并且铌酸锂超表面的微观结构通常为亚波长结构,这进一步增加了其加工难度。在此,通过使用基于氩气的电感耦合等离子体蚀刻和氢氧化钾湿法蚀刻,我们提高了蚀刻质量,并在绝缘体上铌酸锂的基础上制造了一种法诺共振超表面,该超表面在近红外波长下具有92%的非常高的反射率,并且有成为高反射率薄膜的潜力。此外,为了评估超表面的实际性能,我们将其用作腔镜构建了一个法布里-珀罗腔,其反射光谱显示精细度为38。我们的工作为基于绝缘体上铌酸锂的功能性超表面和其他先进光子器件的发展铺平了道路。