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Performance comparison of quantum-dot cellular automata adders.

, , , and . ISCAS (3), page 2522-2526. IEEE, (2005)

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Hexagons are the bestagons: design automation for silicon dangling bond logic., , , and . DAC, page 739-744. ACM, (2022)Simple 4-Bit Processor Based On Quantum-Dot Cellular Automata (QCA)., , , and . ASAP, page 288-293. IEEE Computer Society, (2005)Design Tools for an Emerging SoC Technology: Quantum-Dot Cellular Automata., and . Proc. IEEE, 94 (6): 1225-1244 (2006)On the Error Effects of Random Clock Shifts in Quantum-Dot Cellular Automata Circuits., , , , , and . DFT, page 487-495. IEEE Computer Society, (2007)Simulation of random cell displacements in QCA., , and . JETC, 3 (1): 2 (2007)Implementation of a Simulation Engine for Clocked Molecular QCA., , and . CCECE, page 2128-2131. IEEE, (2006)Performance comparison of quantum-dot cellular automata adders., , , and . ISCAS (3), page 2522-2526. IEEE, (2005)Reducing the Complexity of Operational Domain Computation in Silicon Dangling Bond Logic., , , , and . NANOARCH, page 9:1-9:6. ACM, (2023)Modeling and Evaluating Errors Due to Random Clock Shifts in Quantum-Dot Cellular Automata Circuits., , , , , , and . J. Electron. Test., 25 (1): 55-66 (2009)Towards Atomic Defect-Aware Physical Design of Silicon Dangling Bond Logic on the H -Si $(100)-21$ Surface., , , , , and . DATE, page 1-2. IEEE, (2024)