量子密码学与美国数字安全:全面审查:研究量子技术在创建牢不可破的加密技术方面的潜力及其在国家安全中的前景

Sedat Sonko, Kenneth Ifeanyi Ibekwe, Valentine Ikenna Ilojianya, Emmanuel Augustine Etukudoh, Adefunke Fabuyide
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引用次数: 0

摘要

本研究全面回顾了量子密码学及其在新兴量子技术面前对美国国家安全的影响。主要目的是研究量子加密方法在创建牢不可破的加密方面的潜力及其未来在增强数字安全方面的作用。本研究采用系统的文献综述和内容分析,参考了 2013 年至 2023 年的最新同行评审文章、机构报告和学术期刊。研究方法侧重于评估量子密码学的演变、现状和挑战,以及量子密码学与现有安全框架的整合。主要研究结果表明,量子密钥分发(QKD)和后量子密码学(PQC)为应对量子计算对经典加密方法造成的威胁提供了前景广阔的解决方案。然而,这些技术的实际应用面临着重大挑战,包括技术限制和全球标准化的需要。研究强调,美国国家安全政策迫切需要优先发展和整合抗量子加密技术,并促进国际标准化合作。最后,该研究强调了量子密码学在数字安全领域的变革潜力,强调需要继续开展研究和合作,以克服实施方面的挑战。未来的研究方向包括开发高效的量子加密协议,以及围绕量子技术部署的伦理考量。本研究有助于在量子计算能力不断进步的情况下确保国家利益的讨论。关键词量子密码学 数字安全 后量子密码学 量子密钥分发
本文章由计算机程序翻译,如有差异,请以英文原文为准。
QUANTUM CRYPTOGRAPHY AND U.S. DIGITAL SECURITY: A COMPREHENSIVE REVIEW: INVESTIGATING THE POTENTIAL OF QUANTUM TECHNOLOGIES IN CREATING UNBREAKABLE ENCRYPTION AND THEIR FUTURE IN NATIONAL SECURITY
This study provides a comprehensive review of quantum cryptography and its implications for U.S. national security in the face of emerging quantum technologies. The primary objective is to investigate the potential of quantum cryptographic methods in creating unbreakable encryption and their future role in enhancing digital security. Employing a systematic literature review and content analysis, the study draws on recent peer-reviewed articles, institutional reports, and academic journals from 2013 to 2023. The methodology focuses on evaluating the evolution, current state, and challenges of quantum cryptography, along with its integration into existing security frameworks. Key findings reveal that Quantum Key Distribution (QKD) and post-quantum cryptography (PQC) offer promising solutions against the threats posed by quantum computing to classical encryption methods. However, the practical implementation of these technologies faces significant challenges, including technological limitations and the need for global standardization. The study underscores the urgency for U.S. national security policy to prioritize the development and integration of quantum-resistant cryptographic technologies and to foster international collaboration for standardization. Finally, the study highlights the transformative potential of quantum cryptography in digital security, emphasizing the need for continued research and collaboration to overcome implementation challenges. Future research directions include the development of efficient quantum cryptographic protocols and ethical considerations surrounding the deployment of quantum technologies. This study contributes to the discourse on securing national interests in the face of advancing quantum computing capabilities. Keywords: Quantum Cryptography, Digital Security, Post-Quantum Cryptography, Quantum Key Distribution.
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