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Realization of a Functional Cell for Quantum-Dot Cellular Automata

Alexei O. Orlov, Ishamshah Amlani, Gary H. Bernstein, Craig S. Lent, Gregory L. Snider

Open publisher page 643 citations

Abstract

This paper presents an experimental demonstration of a basic cell of the quantum-dot cellular automata, a transistorless approach to computation that addresses the issues of device density, interconnection, and power dissipation. The device under study was composed of four metal dots, connected with tunnel junctions and capacitors, and operated at <50 mK. Operation was evidenced by switching of a single electron between output dots controlled by a single electron switching in input dots, demonstrating a nonlinear, bistable response.

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What this paper is about

This paper presents an experimental demonstration of a basic cell of the quantum-dot cellular automata, a transistorless approach to computation that addresses the issues of device density, interconnection, and power dissipation. The device under study was composed of four metal dots, connected with tunnel junctions and capacitors, and operated at <50 mK. Operation was evidenced by switching of a single electron between output dots controlled by a single electron switching in input dots, demonstrating a nonlinear, bistable response.

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OpenAlex reports 643 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper presents an experimental demonstration of a basic cell of the quantum-dot cellular automata, a transistorless approach to computation that addresses the issues of device density, interconnection, and power dissipation. The device under study was composed of four metal dots, connected with tunnel junctions and capacitors, and operated at <50 mK. Operation was evidenced by switching of a single electron between output dots controlled by a single electron switching in input dots, demonstrating a nonlinear, bistable response.

Key concepts: Quantum dot cellular automaton, Bistability, Quantum dot, Cellular automaton, Quantum cellular automaton, Realization (probability), Interconnection, Computation

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