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We conduct an architectural exploration of three chip-scale photonic interconnection networks in a novel simulation environment, exploring insertion loss, crosstalk, and energy. The impact of these metrics is evaluated in the context of network performance.
Recent developments have shown the possibility of leveraging silicon nanophotonic technologies for chip-scale interconnection fabrics that deliver high bandwidth and power efficient communications both on- and off-chip. Since optical devices are fundamentally different from conventional electronic interconnect technologies, new design methodologies and tools are required to exploit the potential performance...
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