High-Speed Waveguide InP/InGaAs UTC-PDs for over 200 Gb/s/λ Optical Transmission

Scaling of artificial intelligence data centers is pushing the aggregate speed of photonic transceivers over 1.6 Tb/s and even 3.2 Tb/s, which in the multi-channel configuration accounts for a 200 Gb/s data transmission speed for each wavelength. Uni-traveling carrier photodetectors have proved high bandwidth performance utilizing ultra-fast carrier transit and ultra-small junction capacitance, while few reports discuss the effect of the coplanar lines on bandwidth. In this work, the parasitic effect of coplanar lines is studied, and a modified structure is designed for an InP-based waveguide uni-traveling carrier photodetector. Simulation results reveal a promotion rather than deterioration effect in PD frequency response from the coplanar lines after optimization, and the circuit analysis predicts a parasitic capacitance decrease over 40 fF, which is larger than the 23 fF junction capacitance itself. The fabricated photodetector verifies a 69% increase in bandwidth up to 120 GHz for the same active area at an external responsivity of 0.476 A/W. The eye-diagrams of 100 GBd and 140 GBd under PAM4 format also indicate huge potential for over 200 Gb/s/λ photodetection.

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Publication Details

Journal
Photonics
Published
2026-09-16
DOI
https://doi.org/10.3390/photonics13090874
Primary Topic
Advanced Photonic Communication Systems
Type
article
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High-Speed Waveguide InP/InGaAs UTC-PDs for over 200 Gb/s/λ Optical Transmission

Qin Han, Han Ye, Liyan Geng, Hua Yang
Photonics
Advanced Photonic Communication Systems
article

High-Speed Waveguide InP/InGaAs UTC-PDs for over 200 Gb/s/λ Optical Transmission

Qin Han, Han Ye, Liyan Geng, Hua Yang
article en

Abstract

Scaling of artificial intelligence data centers is pushing the aggregate speed of photonic transceivers over 1.6 Tb/s and even 3.2 Tb/s, which in the multi-channel configuration accounts for a 200 Gb/s data transmission speed for each wavelength. Uni-traveling carrier photodetectors have proved high bandwidth performance utilizing ultra-fast carrier transit and ultra-small junction capacitance, while few reports discuss the effect of the coplanar lines on bandwidth. In this work, the parasitic effect of coplanar lines is studied, and a modified structure is designed for an InP-based waveguide uni-traveling carrier photodetector. Simulation results reveal a promotion rather than deterioration effect in PD frequency response from the coplanar lines after optimization, and the circuit analysis predicts a parasitic capacitance decrease over 40 fF, which is larger than the 23 fF junction capacitance itself. The fabricated photodetector verifies a 69% increase in bandwidth up to 120 GHz for the same active area at an external responsivity of 0.476 A/W. The eye-diagrams of 100 GBd and 140 GBd under PAM4 format also indicate huge potential for over 200 Gb/s/λ photodetection.

PhotonicsVol. 13(9)
State Key Laboratory on Integrated Optoelectronics (CN), Institute of Semiconductors (CN), University of Chinese Academy of Sciences (CN)
Affordable and clean energy
Openalex Percentile: Top 20%
Advanced Photonic Communication Systems
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High-Speed Waveguide InP/InGaAs UTC-PDs for over 200 Gb/s/λ Optical Transmission — Qin Han, Han Ye, et al. · Photonics (2026) | TGRS Research Map | TGRS