Yoojin Ban

According to our database1, Yoojin Ban authored at least 23 papers between 2018 and 2025.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

Legend:

Book  In proceedings  Article  PhD thesis  Dataset  Other 

Links

On csauthors.net:

Bibliography

2025
Ultra-compact silicon rings with high thermal tuning efficiency demonstrated as an 8×400 GHz WDM filter.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2025

70 GHz, 2 A/W, Waveguide-Coupled Germanium-in-Silicon Avalanche Photodiode.
Proceedings of the European Conference on Optical Communications, 2025

A 50 Gb/S NRZ O-Band Silicon Disk Modulator with 6.4 THz FSR.
Proceedings of the European Conference on Optical Communications, 2025


110 GHz GeSi Electroabsorption Modulator on a 300mm SiPh Platform Enabling High-Density 400G/lane IM/DO Links.
Proceedings of the European Conference on Optical Communications, 2025

2024
Low-loss, multi-reticle stitched SiN waveguides for 300mm wafer-level optical interconnects.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2024

Collective die-to-wafer bonding enabling low-loss evanescent coupling for optically interconnected System-on-Wafer.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2024

32×100 GHz WDM filter based on ultra-compact silicon rings with a high thermal tuning efficiency of 5.85 mW/π.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2024

Sub-1 dB Loss SiN-to-Polymer Waveguide Coupling: an Enabler for Co-Packaged Optics.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2024

Accelerating Large Language Model Training with In-Package Optical Links for Scale-Out Systems.
Proceedings of the IEEE Computer Society Annual Symposium on VLSI, 2024

2023
Coupled Dynamic Thermo-Optical Analysis and Compact Modelling of Self-Heating in Ring Modulator.
Proceedings of the International Conference on Photonics in Switching and Computing, 2023

Highly Optimized O-band Si Ring Modulators for Low-Power Hybrid CMOS-SiPho Transceivers.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2023

2022
Silicon Photonics for Scaling the Cloud and Enabling AI.
Proceedings of the 2022 International Symposium on VLSI Design, Automation and Test, 2022

Temperature Tolerant On-Chip WDM Silicon Photonic Transmitter and AWGR-based Routing Interconnects.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2022

2021
60Gb/s waveguide-coupled O-band GeSi quantum-confined Stark effect electro-absorption modulator.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2021

110GHz Through-Silicon Via's Integrated in Silicon Photonics Interposers for Next-Generation Optical Modules.
Proceedings of the European Conference on Optical Communication, 2021

2020
A 400 Gb/s O-Band WDM (8×50 Gb/s) Silicon Photonic Ring Modulator-Based Transceiver.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2020

Automated Thermal Drift Compensation in WDM-Based Silicon Photonic Multi-Socket Interconnect Systems.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2020

2019
DSP-free 52km-long dispersion uncompensated optical link employing a 40 Gb/s O-band silicon microring modulator assembled with a 1V-CMOS driver.
Proceedings of the 2019 24th OptoElectronics and Communications Conference (OECC) and 2019 International Conference on Photonics in Switching and Computing (PSC), 2019

A 4×40 Gb/s O-Band WDM Silicon Photonic Transmitter Based on Micro-Ring Modulators.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2019

2018

Chip-to-Chip Interconnect for 8-Socket Direct Connectivity Using 25Gb/s O-Band Integrated Transceiver and Routing Circuits.
Proceedings of the European Conference on Optical Communication, 2018

Broadband 20 Gbit/s Graphene-Si Electro-Absorption Modulator.
Proceedings of the European Conference on Optical Communication, 2018


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