Visible to the public Quantum color image encryption based on multiple discrete chaotic systems

TitleQuantum color image encryption based on multiple discrete chaotic systems
Publication TypeConference Paper
Year of Publication2017
AuthorsLi, L., Abd-El-Atty, B., El-Latif, A. A. A., Ghoneim, A.
Conference Name2017 Federated Conference on Computer Science and Information Systems (FedCSIS)
Date Published2017
PublisherFedCSIS
KeywordsAlgorithm design and analysis, asymmetric tent map, chaos, chaotic cryptography, chaotic logistic map, Chebyshev approximation, Color, composability, differential attacks, Encryption, encryption process, Histograms, image colour analysis, logistic Chebyshev map, Logistics, Metrics, multiple discrete chaotic systems, pubcrawl, quantum color image encryption, quantum controlled-NOT image, quantum cryptography, quantum encryption algorithm, quantum image encryption algorithm, Resiliency, statistical attacks, XOR operation
Abstract

In this paper, a novel quantum encryption algorithm for color image is proposed based on multiple discrete chaotic systems. The proposed quantum image encryption algorithm utilize the quantum controlled-NOT image generated by chaotic logistic map, asymmetric tent map and logistic Chebyshev map to control the XOR operation in the encryption process. Experiment results and analysis show that the proposed algorithm has high efficiency and security against differential and statistical attacks.

URLhttps://annals-csis.org/proceedings/2017/drp/163.html
DOI10.15439/2017F163
Citation Keyli_quantum_2017