Zobrazeno 1 - 10
of 181
pro vyhledávání: '"Benjamin G. Lee"'
Publikováno v:
Journal of Lightwave Technology. 41:1152-1162
Publikováno v:
2022 27th OptoElectronics and Communications Conference (OECC) and 2022 International Conference on Photonics in Switching and Computing (PSC).
Autor:
Valerija Kamchevska, Laurent Schares, Nicolas Dupuis, Benjamin G. Lee, Christian W. Baks, Alex Forencich, George C. Papen
Publikováno v:
Journal of Lightwave Technology. 38:1330-1340
Fast optical circuit switching has significant potential to solve scaling issues with traditional packet-switch-based networks and improve bandwidth and power efficiency in datacenter and high-performance computing applications. One difficultly in ut
Autor:
Takako Hirokawa, Benjamin G. Lee, Daniel M. Kuchta, Laurent Schares, Christian W. Baks, Russell A. Budd, Fuad E. Doany, Nicolas Dupuis
Publikováno v:
Journal of Lightwave Technology. 38:178-184
We present a strictly nonblocking $4$ × $4$ electrooptic silicon photonic switch fabric with on-chip gain. The switch integrates 12 Mach-Zehnder cells in a 3-stage topology equipped with fast electrooptic phase shifters, and thermooptic phase trimme
Autor:
Benjamin G. Lee
Publikováno v:
Optical Fiber Communication Conference (OFC) 2022.
GPU-accelerated computing systems, which power the AI revolution, rely on increasing amounts of off-chip I/O. To continue scaling, very dense integration of ultra-efficient optical transceivers alongside next-generation processor die will be needed.
Autor:
Douglas M. Gill, William M. J. Green, Jason S. Orcutt, Christian W. Baks, Jonathan E. Proesel, Javier Ayala, Karen Nummy, Herschel A. Ainspan, Benjamin G. Lee, Nicolas Dupuis, Mounir Meghelli
Publikováno v:
Journal of Lightwave Technology. 37:89-94
We report 50- and 60-Gb/s hybrid-integrated optical links in the O-band with CMOS photonic components driven by silicon–germanium ICs using optical-domain feed-forward equalization. The link includes a segmented-electrode Mach–Zehnder modulator a
Autor:
Benjamin G. Lee, Nicolas Dupuis
Publikováno v:
Journal of Lightwave Technology. 37:6-20
Photonic switching technologies show potential for transforming communication networks across diverse markets from long-haul to short-reach distance scales due to their large bandwidth density, high energy efficiency, and potential for low cost. In r
Autor:
Nicolas Dupuis, Jonathan E. Proesel, Fuad E. Doany, Christian W. Baks, Elaine Cyr, Herschel A. Ainspan, Benjamin G. Lee, Nicolas Boyer
Publikováno v:
VLSI Circuits
This work presents the first fully packaged silicon photonics 8×8 switch with monolithically integrated electrical control circuits in 90nm SOI CMOS. The switch is a strictly non-blocking network built from 2×1 and 2×2 Mach-Zehnder switches (MZSs)
Autor:
Elaine Cyr, Christian W. Baks, Jonathan E. Proesel, Benjamin G. Lee, Fuad E. Doany, Nicolas Dupuis, Isabel de Sousa, Nicolas Boyer, Herschel A. Ainspan
Publikováno v:
2020 IEEE 70th Electronic Components and Technology Conference (ECTC).
We describe the advancements made on the automated assembly of a highly integrated 8x8 photonic switch. This switch is designed for maximum efficiency but requires proximity of optical and electrical interconnects and a well-conceived thermal solutio
Autor:
Fuad E. Doany, Nicolas Boyer, Herschel A. Ainspan, Elaine Cyr, Benjamin G. Lee, Nicolas Dupuis, Christian W. Baks, Jonathan E. Proesel
Publikováno v:
OFC
We demonstrate a fully-packaged digitally programmable 8x8 strictly nonblocking electrooptic silicon photonics switch module. We measured fiber-to-fiber loss between 7.5 and 10.5 dB, crosstalk < -30 dB, and reconfiguration time < 10 ns.