Inverse Design of an Ultra-Compact Symmetric 3-dB Optical Power Splitter Based on N-ary Digital Pattern

IF 1.2 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Microwave and Optical Technology Letters Pub Date : 2025-04-23 DOI:10.1002/mop.70202
Jin Wen, Shuangchao Qu, Yu Pan, Chengju Ma, Wei Fan, Ying Zhang, Lan Yin, Chenglong Wang, Hongsen Zhao, Dingkang Zhang, Yuening Jiang
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Abstract

Inverse design based on high-performance computing ability is an efficient and intuitive design method. In this paper, we employed the digitized adjoint method to design a symmetric 3-dB power splitter based on N-ary digital pattern with an occupied compact footprint of only 3.25 µm × 2.6 µm. The digitized adjoint method is applied to inverse design and continuously adjusts and updates the relative permittivity for a cylindrical material filled with the intermediate material to obtain a quasi-digital pattern and then transforms it into a quaternary digital pattern. Based on this approach, a symmetrical structure with etching cylindrical radius of 45, 37, and 30 nm was obtained, which enables the 3-dB power splitter to achieve a precise 50:50 split ratio in a wide wavelength range from 1.45 to 1.65 µm. And the excess loss (EL) was less than 1 dB with an operating bandwidth of 200 nm. This approach holds significant potential for informing the design of high-performance, compact power splitters.

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基于n进数模式的超紧凑对称3db光功率分配器的反设计
基于高性能计算能力的逆设计是一种高效、直观的设计方法。在本文中,我们采用数字化伴随方法设计了一个基于n进制数字模式的对称3db功率分配器,占地面积仅为3.25µm × 2.6µm。将数字化伴随法应用于反设计中,对填充中间材料的圆柱形材料的相对介电常数进行连续调整和更新,得到准数字图形,然后将其转化为四元数字图形。基于该方法,获得了蚀刻圆柱半径为45、37和30 nm的对称结构,使3db功率分配器在1.45 ~ 1.65µm的宽波长范围内实现了精确的50:50分割比。在200 nm的工作带宽下,系统的额外损耗小于1 dB。这种方法对于高性能、紧凑型功率分配器的设计具有重要的潜力。
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来源期刊
Microwave and Optical Technology Letters
Microwave and Optical Technology Letters 工程技术-工程:电子与电气
CiteScore
3.40
自引率
20.00%
发文量
371
审稿时长
4.3 months
期刊介绍: Microwave and Optical Technology Letters provides quick publication (3 to 6 month turnaround) of the most recent findings and achievements in high frequency technology, from RF to optical spectrum. The journal publishes original short papers and letters on theoretical, applied, and system results in the following areas. - RF, Microwave, and Millimeter Waves - Antennas and Propagation - Submillimeter-Wave and Infrared Technology - Optical Engineering All papers are subject to peer review before publication
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