Quantum computing: Cryptographic perspective
Mayank Purohit, Rahul Singh Chauhan, Ruchira Rawat, P Parthiban, Gautam Rana · 2024
Quantum computers with the ability to solve difficult mathematical problems exponentially faster pose an immediate danger to conventional encryption procedures, which are currently thought to be secure in the world of classical computing. This paper explores the fundamental effects of quantum computing on cryptography, showing how quantum algorithms, like Shor's algorithm, may effectively factor big numbers and solve discrete logarithm issues, making popular encryption techniques susceptible. The study looks into how susceptible traditional encryption methods like RSA and ECC are to quantum assaults, highlighting how urgent it is to switch to quantum-resistant cryptographic solutions. This paper also presents an overview of quantum-resistant cryptographic algorithms currently being developed, and investigates quantum key distribution (QKD) protocols as a viable countermeasure. This study highlights the urgent requirement for a proactive strategy in creating quantum-safe cryptographic standards by examining the difficulties presented by quantum computing and assessing the possible directions in post-quantum cryptography. The results underline the need for a united effort from academics, business leaders, and governments to lessen the imminent threat posed by quantum computers and safeguard the integrity and security of digital communication in the future.