Quantum Materials to the Pioneering Future of Computing and Communication

Nakamura Shuto, Akari Chiyo, Himari Ken, Sato Tanaka · Fusion of Multidisciplinary Research An International Journal · 2020

Quantum materials, characterized by their unique electronic, magnetic, and optical properties, are poised to revolutionize the future of computing and communication. These materials, including topological insulators, superconductors, and two-dimensional materials like graphene, exhibit quantum mechanical effects at macroscopic scales, offering unprecedented capabilities for technological advancement. In computing, quantum materials enable the development of quantum bits (qubits) that can perform complex computations at speeds unattainable by classical computers, significantly enhancing processing power and efficiency. For communication, they facilitate ultra-secure quantum communication networks through quantum entanglement and superposition, ensuring data integrity and privacy. Additionally, quantum materials support the creation of novel electronic devices with superior performance and energy efficiency. As research progresses, integrating quantum materials into practical applications will address current limitations and open new horizons in information technology, marking a pivotal shift toward a pioneering future in computing and communication.

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