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绝缘体上薄膜钛酸钡中的工程折射率对比度

Engineering Refractive Index Contrast in Thin Film Barium Titanate-on-Insulator.

作者信息

Cao Yu, Liang Haidong, Lin Hong-Lin, Qi Luo, Yang Ping, Fong Xuanyao, Dogheche Elhadj, Bettiol Andrew, Danner Aaron

机构信息

Department of Electrical and Computer Engineering, National University of Singapore, 4 Engineering Drive 3, Singapore 117583, Singapore.

Centre for Ion Beam Applications (CIBA), Department of Physics, National University of Singapore, 2 Science Drive 3, Singapore 117542, Singapore.

出版信息

Nano Lett. 2023 Aug 23;23(16):7267-7272. doi: 10.1021/acs.nanolett.3c00933. Epub 2023 Aug 2.

Abstract

Barium titanate-on-insulator has demonstrated excellent vertical optical confinement, low loss, and strong electro-optic properties. To fabricate a waveguide-based device, a region of higher refractive index must be created to confine a propagating mode, one way of which is through dry etching to form a ridge. However, despite recent progress achieved in etching barium titanate and similar materials, the sidewall and surface roughness resulting from the physical etching typically used limit the achievable ridge depth. This motivates the exploration of etch-free methods to achieve the required index contrast. Here, we introduce three etch-free methods to create a refractive index contrast in barium titanate-on-insulator, including a metal diffusion method, proton beam irradiation method, and crystallinity control method. Notably, molybdenum-diffused barium titanate leads to a large index change of up to 0.17. The methods provided in this work can be further developed to fabricate various on-chip barium titanate optical waveguide-based devices.

摘要

绝缘体上钛酸钡已展现出优异的垂直光学限制、低损耗和强电光特性。为制造基于波导的器件,必须创建一个更高折射率的区域来限制传播模式,其中一种方法是通过干法蚀刻形成脊形。然而,尽管近期在蚀刻钛酸钡及类似材料方面取得了进展,但通常使用的物理蚀刻所导致的侧壁和表面粗糙度限制了可实现的脊形深度。这促使人们探索无蚀刻方法以实现所需的折射率对比度。在此,我们介绍三种在绝缘体上钛酸钡中产生折射率对比度的无蚀刻方法,包括金属扩散法、质子束辐照法和结晶度控制法。值得注意的是,钼扩散的钛酸钡导致高达0.17的大折射率变化。这项工作中提供的方法可进一步开发用于制造各种基于片上钛酸钡光波导的器件。

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