
A highly nonlinear substitution-box (S-box) design using action of modular group on a projective line over a finite field
Author(s) -
Nasir Siddiqui,
Fahim Yousaf,
Fiza Murtaza,
Muhammad Ehatisham-ul-Haq,
Muhammad Usman Ashraf,
Ahmed Mohammed Alghamdi,
Ahmed S. Alfakeeh
Publication year - 2020
Publication title -
plos one
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.99
H-Index - 332
ISSN - 1932-6203
DOI - 10.1371/journal.pone.0241890
Subject(s) - algorithm , computer science , encryption , computer network
Cryptography is commonly used to secure communication and data transmission over insecure networks through the use of cryptosystems. A cryptosystem is a set of cryptographic algorithms offering security facilities for maintaining more cover-ups. A substitution-box (S-box) is the lone component in a cryptosystem that gives rise to a nonlinear mapping between inputs and outputs, thus providing confusion in data. An S-box that possesses high nonlinearity and low linear and differential probability is considered cryptographically secure. In this study, a new technique is presented to construct cryptographically strong 8×8 S-boxes by applying an adjacency matrix on the Galois field GF (2 8 ). The adjacency matrix is obtained corresponding to the coset diagram for the action of modular groupP S L ( 2 , Z )on a projective line PL ( F 7 ) over a finite field F 7 . The strength of the proposed S-boxes is examined by common S-box tests, which validate their cryptographic strength. Moreover, we use the majority logic criterion to establish an image encryption application for the proposed S-boxes. The encryption results reveal the robustness and effectiveness of the proposed S-box design in image encryption applications.