量子区块链:趋势、技术和未来方向

IF 2.5 Q3 QUANTUM SCIENCE & TECHNOLOGY
Manjula Gandhi S, Chaitrali Mulay, Karthiganesh Durai, G. Murali, Jafar Ali Ibrahim Syed Masood, V. Vijayarajan, Kumar Gautam, N. S. Kalyan Chakravarthy, S. Suresh Kumar, Saurabh Agarwal, Murali S, Vijayasherly V, David Asirvatham, Sarfraz Brohi, Chandru Vignesh C, Anbuchelian S
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引用次数: 0

摘要

区块链技术是一个高度发达的数据库系统,可以在商业网络中共享信息。它将细节存储在按时间顺序连接的块中,通过共识机制确保信息完整性,防止未经授权的更改。这种分散的系统消除了对可信中介的需求,减轻了漏洞并增强了交易安全性。b区块链的应用涵盖能源、金融、媒体、娱乐和零售等领域。然而,经典区块链面临量子计算进步的威胁,需要发展量子区块链技术。量子区块链利用量子计算和信息理论,提供了增强的安全性和不变性。本文讨论了不同的数学基础、实际实现和基于格的加密在保护区块链应用中的有效性。通过使用数学公式和示例,分析了加密技术如何保护区块链系统免受量子攻击。量子计算通过先进的加密和认证加强区块链安全性,这对于保护不同部门免受不断变化的网络威胁至关重要。如果区块链网络要在未来的技术发展中保持稳健和完整,那么对抗量子设计的进一步研究是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quantum blockchain: Trends, technologies, and future directions

Quantum blockchain: Trends, technologies, and future directions

Blockchain technology is a highly developed database system that shares information within a business web. It stores details in blocks connected chronologically, ensuring information integrity through consensus mechanisms that prevent unauthorised alterations. This decentralised system removes the need for a believable mediator, mitigating vulnerabilities and enhancing transaction security. Blockchain’s application spans the energy, finance, media, entertainment, and retail sectors. However, classical blockchain faces threats from quantum computing advancements, necessitating the development of quantum blockchain technology. Quantum blockchain, leveraging quantum computation and information theory, offers enhanced security and immutability. In this paper, different mathematical foundations, practical implementations and effectiveness of lattice-based cryptography in securing blockchain applications are discussed. Analysis of how the cryptographic techniques can protect blockchain systems against quantum attacks is being done by using mathematical formulations and examples. Quantum computing strengthens blockchain security with advanced encryption and authentication, which is critical for safeguarding diverse sectors from evolving cyber threats. Further study on quantum-resistant design is necessary if blockchain networks are to be robust and intact in the face of future technological developments.

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