Nanoelectronic architecture for Boolean logic
- 1 April 1997
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in Proceedings of the IEEE
- Vol. 85 (4), 574-588
- https://doi.org/10.1109/5.573742
Abstract
A nanoelectronic implementation of Boolean logic circuits is described where logic functionality is realized through charge interactions between metallic dots self-assembled on the surface of a double-barrier resonant tunneling diode (RTD) structure. The primitive computational cell in this architecture consists of a number of dots with nearest neighbor (resistive) interconnections. Specific logic functionality is provided by appropriate rectifying connections between cells. We show how basic logic gates, leading to combinational and sequential circuits, can be realized in this architecture. Additionally, architectural issues including directionality, fault tolerance, and power dissipation are discussed. Estimates based on the current-voltage characteristics of RTD's and the capacitance and resistance values of the interdot connections indicate that static power dissipation as small as 0.1 nW/gate and switching delay as small as a few picoseconds can be expected. We also present a strategy for fabricating/synthesizing such systems using chemical self-organizing/self-assembly phenomena. The proposed synthesis procedure utilizes several chemical self-assembly techniques which have been demonstrated recently, including self-assembly of uniform arrays of close-packed metallic dots with nanometer diameters, controlled resistive linking of nearest neighbor dots with conjugated organic molecules and organic rectifiers.Keywords
This publication has 42 references indexed in Scilit:
- Inhibited oxidation in low-temperature grown GaAs surface layers observed by photoelectron spectroscopyApplied Physics Letters, 1996
- Nanofabrication of a quantum dot array: Atomic force microscopy of electropolished aluminumJournal of Electronic Materials, 1996
- Coulomb Staircase at Room Temperature in a Self-Assembled Molecular NanostructureScience, 1996
- Stability of a low-temperature grown GaAs surface layer following air exposure using tunneling microscopyApplied Physics Letters, 1996
- Electronic conduction through organic moleculesPhysical Review B, 1996
- Self-assembled monolayers of dithiols, diisocyanides, and isocyanothiols on gold: ‘chemically sticky’ surfaces for covalent attachment of metal clusters and studies of interfacial electron transferInorganica Chimica Acta, 1996
- Very low resistance nonalloyed ohmic contacts using low-temperature molecular beam epitaxy of GaAsApplied Physics Letters, 1995
- Resistance bi-stability in resonant tunneling diode pillar arraysApplied Physics Letters, 1995
- Photoluminescence of single semiconductor nanocrystallites by two-photon excitation microscopyChemical Physics Letters, 1994
- Adsorption of bifunctional organic disulfides on gold surfacesJournal of the American Chemical Society, 1983