经典和量子计算机的可逆门动态s盒

Anindita Sarkar, S. R. Chatterjee, M. Chakraborty
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引用次数: 0

摘要

在各种电路中,普遍采用可逆逻辑门来代替传统的门,以达到降低功耗和提高速度的目的。可逆门的应用领域包括量子计算、纳米技术、低功耗CMOS、光学计算等。可逆门是量子电路的关键器件。本文采用可逆栅极设计动态轻量化s盒。s盒是密码算法的关键电路元件。采用可控非门(CNOT)、Peres门和Selim Al Mamun门(SAM)的组合来实现S-Box的动态特性。通过仿真分析,对雪崩准则(AC)、严格雪崩准则(SAC)、位无关准则(BIC)和非线性等密码学特性进行了评价,以衡量所提出的s盒的强度和可靠性。比较性能调查是与流行的AES算法中使用的Rijndael S-box进行的,因为它被nistr广泛接受,并且仍然表明所提出的S-box优于现有的S-box。利用输入相关的可逆逻辑门组合增强了s盒在经典计算机和量子计算机中的性能。
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Dynamic S-box with Reversible Gates for both Classical and Quantum Computer
Reversible logic gates are universally adopted to replace the classical gates in various circuits to avail the advantages of power reduction and speed maximization. The application of reversible gates includes various fields like Quantum computing, Nano technology, low power CMOS, optical computing etc. Reversible gates are the key components for the quantum circuits. Here reversible gates are used to design a dynamic light weight S-box. The S-box is the key circuit component for cryptographic algorithm. The combination of Controlled NOT(CNOT), Peres and Selim Al Mamun (SAM) gates are used to achieve the dynamic nature of the S-Box. The simulation analysis is made to evaluate the cryptographic properties such as Avalanche Criteria (AC), Strict Avalanche Criteria (SAC), Bit Independence Criteria (BIC) and Nonlinearity to measure the strength and reliability of the proposed S-box. The comparative performance investigation is done with the Rijndael S-box used in popular AES algorithm as it was widely accepted by NISTIR and still shows that the proposed S-Box outperform with respect to the existing S-box. Use of input dependant reversible logic gate combination enhances the performance of the S-box in both classical and quantum computer.
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