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Photonic Interconnects for Interposer-based 2.5D/3D Integrated Systems on a Chip.

, , , and . MEMSYS, page 377-386. ACM, (2016)

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Bit-parallel all-to-all and flexible AWGR-based optical interconnects., , , and . OFC, page 1-3. IEEE, (2017)Assessing the energy break-even point between an optical NoC architecture and an aggressive electronic baseline., , , , , and . DATE, page 1-6. European Design and Automation Association, (2014)From hybrid electro-photonic to all-optical on-chip interconnections for future CMPs.. HPCS, page 999-1001. IEEE, (2014)Photonic Interconnects for Interposer-based 2.5D/3D Integrated Systems on a Chip., , , and . MEMSYS, page 377-386. ACM, (2016)Design Options for Optical Ring Interconnect in Future Client Devices., and . JETC, 10 (4): 30:1-30:25 (2014)Towards compelling cases for the viability of silicon-nanophotonic technology in future manycore systems., , , , , , and . NOCS, page 170-171. IEEE, (2014)Simultaneous Optical Path-Setup for Reconfigurable Photonic Networks in Tiled CMPs., and . HPCC/CSS/ICESS, page 482-485. IEEE, (2014)Contrasting wavelength-routed optical NoC topologies for power-efficient 3D-stacked multicore processors using physical-layer analysis., , , and . DATE, page 1589-1594. EDA Consortium San Jose, CA, USA / ACM DL, (2013)Design and Evaluation of AWGR-Based Photonic NoC Architectures for 2.5D Integrated High Performance Computing Systems., , , and . HPCA, page 289-300. IEEE Computer Society, (2017)A Simple On-Chip Optical Interconnection for Improving Performance of Coherency Traffic in CMPs., and . DSD, page 312-318. IEEE Computer Society, (2012)