表面と真空
Online ISSN : 2433-5843
Print ISSN : 2433-5835
特集「量子ビット・量子センサーを実現する量子ナノ材料」
誤り耐性量子コンピュータの研究開発とビジネス動向~表面科学・真空工学への期待~
川畑 史郎
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ジャーナル 認証あり

2026 年 69 巻 2 号 p. 54-61

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Fault-tolerant quantum computers (FTQCs) are expected to surpass classical computers in solving problems such as integer factorization, quantum chemistry, machine learning, and quantum simulations. Recent progress in quantum error correction, including the realization of logical qubits, has accelerated the transition from noisy intermediate-scale quantum devices (NISQ) toward practical FTQCs. Among various hardware approaches, superconducting qubits and neutral atom qubits are currently leading candidates, with rapid advances reported by major companies and research institutes. However, achieving scalable FTQCs requires overcoming critical technological challenges in materials, device fabrication, and system integration. In this context, surface science and vacuum engineering play pivotal roles. High-quality thin films, defect-free interfaces, ultra-high vacuum environments, and advanced cleaning and bonding techniques directly determine qubit coherence and reliability. This article reviews the current research and business trends in FTQCs and highlights the crucial contributions expected from the surface science and vacuum engineering communities.

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この記事はクリエイティブ・コモンズ [表示 - 非営利 4.0 国際]ライセンスの下に提供されています。
https://creativecommons.org/licenses/by-nc/4.0/deed.ja
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