量子计算对新兴技术的安全挑战

A. Abuarqoub
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引用次数: 1

摘要

量子计算已迅速成为当今许多计算机科学领域的先锋。这是因为量子计算机能够以经典计算机无法实现的效率执行计算任务。量子计算技术对社会有着持久的潜在影响,对我们生活的许多方面有着广泛的影响。通信产业研究机构(CIR)估计,到2023年,全球量子计算市场在相关软件和服务方面的支出预计将达到19亿美元,到2027年将增加到80亿美元。尽管量子计算有几个优势,但它威胁到当前的加密技术,而加密技术对于当今的互联网标准(如传输层安全(TLS))是必要的。这是由于它能够并行执行无限复杂的计算。因此,量子计算机有望解决密钥分发问题,破解每一个基于非对称密码的单一密码和认证算法,如:RSA、ECC、Diffie-Hellman等。物联网(IoT)、区块链、自动驾驶汽车、5G、人工智能(AI)和机器人等新兴技术的安全运行都依赖于密码学。虽然量子计算支持技术的进化和成长,但它将对这些技术的当前进展和未来发展构成威胁。因此,密码学和身份验证技术需要改进,因为引入量子计算将使当今的网络安全面临严重风险。NSA和NIST提出了应对这些挑战的解决方案。然而,这些解决方案仍然不成熟,因为它们需要对硬件实现进行重大升级。相反,这些建议侧重于所谓的后量子、量子证明、量子安全或量子抵抗密码系统。本次演讲概述了量子技术对身份验证、数据交换和数据存储的影响,以及密码学发挥重要作用的领域,如:区块链、5G、物联网和人工智能技术。它研究了量子技术对这些新兴技术可能产生的影响。最后,讨论了目前一些致力于保护量子时代设备和系统并减轻量子攻击的量子安全解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Security Challenges Posed by Quantum Computing on Emerging Technologies
Quantum computing has quickly become at the vanguard of many computer science fields today. This is motivated by quantum computers ability to perform computational tasks with efficiencies that are not possible with classical computers. Quantum computing technology has a lasting potential impact on society and a broad implications on many aspects of our lives. Communications Industry Researchers (CIR) estimates that the global quantum-computing market is expected to reach $1.9 billion in 2023, increasing to $8 billion by 2027, in spending on associated software and services. Although quantum computing has several advantages, it threatens the current cryptographic techniques, which are necessary for today’s Internet standards like the Transport Layer Security (TLS). This is due to its ability to perform infinite complex computations in parallel. Therefore, it is expected that quantum computers will be able to solve the key distribution problem and break every single cryptography and authentication algorithm based on Asymmetric cryptography, such as: RSA, ECC, and Diffie-Hellman. New emerging technologies such as the Internet of Things (IoT), blockchain, autonomous vehicles, 5G, Artificial Intelligence (AI) and robotics all rely on cryptography for their secure operation. Although quantum computing supports technological evolution and growth, it will pose a threat to the current progress and future development of these technologies. Therefore, cryptography and authentication techniques need improvements as introducing quantum computing would put today’s cybersecurity in serious risk. NSA and NIST proposed solutions to tackle these challenges. However, these solutions are still immature as they need major upgrade of hardware implementation. Instead, the recommendations focus on what is called post-quantum, quantum-proof, quantum-safe or quantum-resistant cryptosystems. This talk outlines how the impact of quantum technologies on authentication, data exchange, and data storage, as well as areas where cryptography plays an essential role, such as: blockchain, 5G, IoT, and AI technologies. It investigate the possible impact of quantum technologies on these emerging technologies. Finally, it discusses some of the current quantum security solution that are devoted to protect the devices and systems in the quantum era, and mitigate quantum attacks.
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