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Quantum Dot Cellular Automata Adders: An XOR Gate Approach within Nanoelectronics

  • Angshuman Khan,
  • Rohit Kumar Shaw

摘要

Abstract

The design and implementation of combinational digital circuits using quantum-dot cellular automata (QCA) technology present a promising frontier in digital electronics. Leveraging the inherent properties of QCA, this study explores the feasibility and efficacy of constructing adder circuits using a simplified XOR gate circuit, with 40% less complexity in cell count, as a foundational element. By employing single-layered architecture and exploiting the unique characteristics of QCA, such as low power consumption and high-speed operation, this research aims to develop energy efficient and compact adder circuits, especially 30% area-efficient single-layer full adder, without any crossovers, suitable for diverse digital computing applications. We designed the layouts using QCADesigner 2.0.3 and calculated energy consumption with the help of QCAPro and QCADesigner 1.0.1. While comparing proposed designs to previous works, we show that they perform better across various metrics. This suggests that similar methodologies and gate architectures could be used to create more complex circuits in the future. The proposed methodology entails the systematic design and analysis of single-layer coplanar adder circuits. We use practical examples, like XOR gates, half adders, and full adders, to give readers a clear and comprehensive understanding of how QCA-based logic gates are implemented and utilized in nanocomputing approaches.