Fundamentals of DNA Computation in the Domain of Cryptosystems

Adithya B. (f51844e1-5690-4bbc-afd8-22e81de10298, Santhi G. (a711be60-0dcf-43de-a46b-b0de7a16eb7e
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引用次数: 0

Abstract

In the modern world of e-business and e-commerce, security of the confidentiality, integrity, and availability (CIA triad) of stored information along with transmitted data is essential. In cryptography, DNA cryptography is a newly emerging discipline arising from the work of DNA computing. The idea of DNA cryptography is based on DNA molecules capable of storing, processing, and transmitting information. The biological history of DNA cryptography and the theory of DNA computation are briefly described in this article. In comparison to traditional cryptography and quantum cryptography areas, DNA cryptography progresses via security and its applications. The primary objective of DNA cryptography research is to study the DNA molecule's features and reactions, create appropriate hypotheses, discover potential development pathways, find simple DNA cryptography implementation methods, and lay the groundwork for future growth.
密码系统领域DNA计算基础
在电子商务和电子商务的现代世界中,存储信息和传输数据的机密性、完整性和可用性(CIA三位一体)的安全性至关重要。在密码学中,DNA密码学是由DNA计算工作产生的一门新兴学科。DNA密码学的思想是基于能够存储、处理和传输信息的DNA分子。本文简要介绍了DNA密码学的生物学历史和DNA计算理论。与传统密码学和量子密码学领域相比,DNA密码学是通过安全性和应用来发展的。DNA密码学研究的首要目标是研究DNA分子的特征和反应,提出适当的假设,发现潜在的发展途径,找到简单的DNA密码学实现方法,为未来的发展奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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