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On the power of quantum cryptography and computers

机译:论量子密码学和计算机的力量

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摘要

It is well known that threats and attacks to information on the digital network environment are growing rapidly, putting extra pressure on individuals and businesses to protect their privacy and intellectual property. For this reason, many cryptographic security protocols have been developed over the past decades in an attempt to protect the privacy between communicating parties and to reduce the risk of malicious attacks. However, most of the cryptographic algorithms developed so far are based on mathematical models and suffer from many security defects, such as: a brute force attack, factorization problem, and many others. Thus, most of these proposed cryptographic systems are not proven to be completely secure against the main threats of modern networking technologies and computing systems. In this paper, a security framework model for quantum cryptography system which is based on the physical properties of light particles is proposed and all security requirements to assist in ensuring confidentiality between communicating parties are incorporated. The research work in this paper is based on a series of experiments which have been advocated recently by some agencies and researchers who used the quantum technology as a more effective method for solving the key distribution problem. The results of the proposed method is demonstrated and validated by experimental results.
机译:众所周知,数字网络环境中对信息的威胁和攻击正在迅速增长,这给个人和企业施加了更大的压力,以保护他们的隐私和知识产权。由于这个原因,在过去的几十年中已经开发了许多密码安全协议,以试图保护通信方之间的隐私并减少恶意攻击的风险。但是,到目前为止开发的大多数密码算法都是基于数学模型的,并且存在许多安全缺陷,例如:蛮力攻击,分解问题以及许多其他缺陷。因此,尚未证明大多数这些提议的密码系统对于现代网络技术和计算系统的主要威胁是完全安全的。本文提出了一种基于光粒子物理特性的量子密码系统安全框架模型,并结合了有助于确保通信双方之间机密性的所有安全要求。本文的研究工作基于一系列机构和研究人员最近提倡的一系列实验,他们使用量子技术作为解决密钥分配问题的更有效方法。实验结果证明了所提方法的有效性。

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