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Published on: June 9, 2023
Inverse Design of Multi-Port Power Splitter with Arbitrary Ratio Based on Shape Optimization
Yang Liu1, Zhe Kang2, Haoda Xu3
1Department of Basic Courses Teaching, Jilin Business and Technology College, Changchun 130507, China.
This study introduces a novel multiport arbitrary ratio power splitter (MAPS) for silicon photonics, enabling flexible power distribution across three channels. The compact device demonstrates low loss, enhancing photonic integrated circuit capabilities.
Area of Science:
- Photonics and Optical Engineering
- Materials Science for Integrated Circuits
- Nanophotonics
Background:
- Arbitrary ratio power splitters (APSs) are key for flexible photonic integrated circuits (PICs) on silicon-on-insulator (SOI).
- Existing APS designs typically offer only two output channels, limiting their application scope.
- Advanced power management in PICs requires multi-channel splitting capabilities.
Purpose of the Study:
- To develop a novel multiport arbitrary ratio power splitter (MAPS) using shape optimization.
- To achieve arbitrary power distribution across three output channels in a compact footprint.
- To validate the MAPS designs through simulation and experimental measurements.
Main Methods:
- A shape optimization method was employed to design the MAPS.
- The MAPS was designed for a compact footprint of 6 µm × 2.7 µm.
- Simulations and experimental measurements were conducted to validate performance.
Main Results:
- Two MAPS designs with power ratios of 1:2:1 and 1:2:4 were successfully demonstrated.
- Designs achieved desired power distribution with excess losses (ELs) below 0.5 dB over a 1500-1600 nm bandwidth.
- Experimental validation showed ELs below 1.3 dB across a 1500-1565 nm bandwidth.
Conclusions:
- The shape optimization method enables the development of compact, three-channel MAPS for PICs.
- The demonstrated MAPS designs offer flexible and efficient power splitting capabilities.
- This work advances the functionality of SOI-based photonic integrated circuits.
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