A Optimized Reversible Design for Programmable Array Logic Based on Quantum Computing Nanotechnology
摘要
Using the ideas of quantum physics, quantum computing is a new technology that can solve issues that traditional computers are unable to. It utilizes quantum processes to develop novel forms of computation, with qubits as its fundamental units. The core concepts of quantum physics that underpin quantum computing are superposition and entanglement. These ideas enable quantum computers to perform jobs with orders of magnitude less energy consumption than traditional computers. In order to improve computing capabilities, this effort focuses on building Quantum Logic Gates and Programmable Array Logic (PAL) employing Quantum Gates. Combinational and sequential logic circuits are created using Programmable Logic Devices (PALs). It is a flexible logic device that can be configured to carry out a variety of tasks, from simple logic gate operations to intricate system-on-chip layouts. Quantum-based PAL can do billions of operations concurrently thanks to the capabilities of quantum computing, significantly increasing computing power and efficiency.