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紧凑型硅基光子波导反射器的逆向设计及其在法布里-珀罗谐振器中的应用。

Inverse design of compact silicon photonic waveguide reflectors and their application for Fabry-Perot resonators.

作者信息

Kim Yonghan, Hong Sung-Hoon

机构信息

Photonic and Wireless Devices Research Division, Terrestrial and Non-Terrestrial Integrated Telecommunications Research Laboratory, Electronics and Telecommunications Research Institute (ETRI), Daejeon, 34129, Republic of Korea.

Material and Component Research Division, Superintelligence creative Research Laboratory, Electronics and Telecommunications Research Institute (ETRI), Daejeon, 34129, Republic of Korea.

出版信息

Nanophotonics. 2024 Apr 16;13(15):2829-2837. doi: 10.1515/nanoph-2024-0017. eCollection 2024 Jul.

Abstract

Silicon photonic waveguide resonators, such as microring resonators, photonic crystal waveguide cavities, and Fabry-Perot resonators based on the distributed Bragg reflectors, are key device components for silicon-based photonic integrated circuits (Si-PIC). For the Si-PIC with high integration density, the device footprints of the conventional photonic waveguide resonators need to be more compact. Inverse design, which is operated by the design expectation and different from the conventional design methods, has been investigated for reducing the photonic device components nowadays. In this paper, we inversely designed the silicon photonic waveguide reflectors for two target wavelengths: one is 1310 nm and the other is 1550 nm. The silicon photonic waveguide reflectors have reflectance of 0.99993 and 0.9955 for the wavelength of 1310 nm and 1550 nm each with 5-μm-long reflectors. Also, we theoretically investigated Fabry-Perot resonators based on the inversely designed photonic waveguide reflectors. factors of the Fabry-Perot resonators have been calculated to be 1.3 × 10 for the wavelength of 1310 nm and 2583 for the wavelength of 1550 nm. We have expected that the inversely designed photonic waveguide reflectors and their applications for the Fabry-Perot resonators can be utilized for compact passive/active device components such as wavelength filters, modulators, and external cavity lasers.

摘要

硅基光子波导谐振器,如微环谐振器、光子晶体波导腔以及基于分布式布拉格反射器的法布里 - 珀罗谐振器,是硅基光子集成电路(Si - PIC)的关键器件组件。对于具有高集成密度的Si - PIC而言,传统光子波导谐振器的器件尺寸需要更紧凑。如今,为了减小光子器件组件的尺寸,人们已经开始研究一种与传统设计方法不同、基于设计预期进行操作的逆向设计方法。在本文中,我们针对两个目标波长对硅基光子波导反射器进行了逆向设计:一个是1310纳米,另一个是1550纳米。对于波长为1310纳米和1550纳米的情况,硅基光子波导反射器在反射器长度为5微米时,各自的反射率分别为0.99993和0.9955。此外,我们还从理论上研究了基于逆向设计的光子波导反射器的法布里 - 珀罗谐振器。对于波长为1310纳米的情况,法布里 - 珀罗谐振器的品质因数经计算为1.3×10;对于波长为1550纳米的情况,品质因数为2583。我们预期,逆向设计的光子波导反射器及其在法布里 - 珀罗谐振器中的应用可用于紧凑的无源/有源器件组件,如波长滤波器、调制器和外腔激光器。

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