IEEE Transactions on Electron Devices · 2015 · 38 citations · 18 references
Diamond-like CarbonElectrical EngineeringGate LengthRf OperationEngineeringRf SemiconductorNanoelectronicsElectronic EngineeringApplied PhysicsGate NodesShortest Gate LengthMicroelectronicsComparative StudySemiconductor DeviceElectronic Circuit
Three sets of different gate-length field-effect transistors (250, 120, and 50 nm) have been defined on homoepitaxial hydrogen-terminated diamond with the 50-nm device being the smallest gate length diamond transistor fabricated to date. DC- and small-signal RF measurements were undertaken to compare the operation of these gate nodes. RF small-signal equivalent circuits were generated to contrast individual components and better understand the operation at various gate dimensions. Scaling the gate length to smaller dimensions leads to an increase in the cutoff frequency of these devices although parasitic elements are found to dominate at the shortest gate length of 50 nm, limiting the outstanding potential of these devices.
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High Carrier Mobility in Single-Crystal Plasma-Deposited Diamond
Jan Isberg, J. Hammersberg, Erik M. J. Johansson et al. · Science · 2002 · 1.3K citations
High-frequency, scaled graphene transistors on diamond-like carbon
Yanqing Wu, Yu-Ming Lin, Ageeth A. Bol et al. · Nature · 2011 · 898 citations
Diamond as an electronic material
Chris J.H. Wort, Richard Balmer · Materials Today · 2008 · 741 citations · Full text
Materials Science, Semiconductors, Electrical Engineering +12