In today’s interconnected digital society, the protection of information is not just a technical requirement but a cornerstone of trust, governance, and progress. Every email we send, every financial transaction we make, every online search query we type, and every AI system that analyzes data in real time—all depend on cryptographic security. Cryptography, once regarded as a highly specialized tool of spies, mathematicians, and military strategists, has now become a pervasive and indispensable technology that underpins the very infrastructure of our global digital economy.
At the heart of cryptography lies number theory—a branch of pure mathematics that investigates the properties of integers, prime numbers, modular arithmetic, and abstract algebraic structures. What was once considered “the queen of mathematics” and “an art for art’s sake” has become one of the most powerful weapons against cybercrime. Techniques such as modular exponentiation, prime testing, elliptic curve arithmetic, and the discrete logarithm problem are not only abstract mathematical curiosities but also the lifeblood of secure communication, online banking, e-commerce, blockchain, and digital identity.
However, the story does not stop at cryptography and number theory. The dawn of the Artificial Intelligence (AI) era has added a new layer of complexity and opportunity to the field of security. AI has empowered cybersecurity systems with the ability to detect anomalies, predict attacks, defend against malware, and even break weak cryptographic algorithms. But at the same time, AI introduces new threats—adversarial AI attacks, data poisoning, model inversion, and large-scale misinformation campaigns—all of which demand new security paradigms that combine mathematics, algorithms, and intelligent defense mechanisms.
This book, “Cryptography, Number Theory, and AI Security: Foundations and Applications”, is designed as a bridge between classical mathematical security principles and modern AI-driven defense strategies. It offers a comprehensive exploration of the fundamentals of cryptography, the mathematical structures underlying secure systems, and the emerging role of AI in both defending and attacking these systems.
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