IEEE Transactions on Electron Devices · 2015 · 24 citations · 11 references
EngineeringVlsi DesignComputer ArchitectureInterconnection Network ArchitectureMultilayer GrapheneEdge RoughnessGraphene NanomeshesNanoelectronicsElectronic PackagingCircuit LevelElectrical EngineeringComputer EngineeringInterconnection NetworkTechnology/circuit/system Co-optimizationMicroelectronicsSub-10-nm Technology NodeGraphene Quantum DotGraphene FiberApplied PhysicsGrapheneArm Core ProcessorGraphene Nanoribbon
Based on realistic circuit- and system-level simulations, graphene interconnects are analyzed in terms of multiple material properties, such as the mean free path (MFP), the contact resistance, and the edge roughness. The benchmarking results indicate that the advantage of using graphene interconnects occurs only under certain circumstances. The device-level parameters, including the supply and threshold voltages, and the circuit-level parameters, including the wire length and width, have large impacts on both the delay and energy-delay product (EDP). At the circuit level, one representative circuit, a 32-bit adder, is investigated, where up to 40% and 70% improvements in delay and EDP are observed. At the system-level analysis, an ARM Cortex-M0 processor is synthesized, and placement and routing are performed. After replacing copper interconnects with multilayer graphene interconnects, up to 15% and 22% performance improvements in clock frequency and EDP have been observed. It is also demonstrated that the benefits of using graphene for the ARM core processor are strongly dependent on the quality of the graphene, such as the MFP and the edge roughness.
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A. K. Geǐm, Kostya S. Novoselov · Nature Materials · 2007 · 38.9K citations
Materials Science, Graphene-based Nano-antennas, Engineering +5
Ultrahigh electron mobility in suspended graphene
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Boron nitride substrates for high-quality graphene electronics
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Screening and Interlayer Coupling in Multilayer Graphene Field-Effect Transistors
Nano Letters · 2009 · 310 citations · Full text