Quantum Computing Poised to Transform Cybersecurity and Modern Technology
Research from KIIT Deemed to be University suggests that quantum computing will revolutionize various fields, including cybersecurity, artificial intelligence, and digital communication. By harnessing the power of quantum computing, researchers believe it is possible to bypass current limitations and achieve breakthroughs in problem-solving. The study examines the implications of quantum computing on real-world applications, highlighting its potential to transform industries.
Key Takeaways:
- Quantum computing stands poised to transform numerous fields of modern technology, offering computational capabilities beyond those of classical systems.
- The study provides a detailed analysis of major fields, including AI/ML, blockchain, cybersecurity, and digital communication, highlighting how they are significantly transformed through advancements in quantum computing.
- The research examines major quantum algorithms, including Shor's integer factorization algorithm, Grover's search algorithm, and hybrid quantum-classical approaches like QAOA and VQE.
- The study also surveys significant advancements in quantum hardware, including increasing qubit counts, improved coherence, and emerging quantum processor technologies.
- The research concluded that significant advancements in quantum computing will have a substantial impact on near-term and long-term computing capabilities.
- The study outlines future research directions to fully harness quantum power across industries, highlighting the path towards transformation of various fields.
Statistics:
- The study highlighted the potential of quantum computing to solve complex problems in various fields, including cryptography, AI/ML, blockchain, and network communication.
- The researchers identified significant advancements in quantum hardware, including increasing qubit counts from 53 to 72 within a short period.
- The study emphasized that quantum computing has the potential to achieve breakthroughs in problem-solving, beyond the capabilities of classical systems.
- The researchers identified the limitations of current quantum computing and outlined future research directions to overcome these limitations.
- The study presented a comparative analysis of current quantum computing paradigms and architectures, highlighting their implications for near-term and long-term computing capabilities.
Sources:
- A survey on quantum computing: Transforming cryptography, AI/ML, blockchain, and network communication. Franklin Open, 2025,12():100371.
- NewsRx. KIIT Deemed to be University Researchers Yield New Study Findings on Cybersecurity (A survey on quantum computing: Transforming cryptography, AI/ML, blockchain, and network communication). Journal of Engineering. October 20, 2025; p 1405.
- https://doi-org.sdpl.idm.oclc.org/10.1016/j.fraope.2025.100371