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Quantum Machine Learning in Cloud-Based Security Services and Applications

Quantum Machine Learning in Cloud-Based Security Services and Applications
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Author(s): Ravikumar Ch (Sreenidhi University, Hyderabad, India), K. Raghavendar (TKR College of Engineering, India), Isha Batra (Lovely Professional University, India), Ghadah Naif Alwakid (College of Computer and Information Sciences, Jouf University, Saudi Arabia)and Khulud Salem S. Alshudukhi (College of Computer and Information Sciences, Jouf University, Saudi Arabia)
Copyright: 2026
Pages: 14
Source title: Analyzing Mobile Apps Using Smart Assessment Methodology
Source Author(s)/Editor(s): Basheer Riskhan (Albukhary International University, Malaysia), Khalid Hussain (Albukhary International University, Malaysia)and Halawati Abd Jalil Safuan (Albukhary International University, Malaysia)
DOI: 10.4018/979-8-3693-6925-8.ch010

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Abstract

The integration of Quantum Machine Learning (QML) into cloud-based security services represents a transformative shift in cybersecurity. By leveraging quantum computing's ability to process data exponentially faster than classical systems, QML enhances cloud security with real-time threat detection, anomaly recognition, and intrusion prevention. It introduces quantum-inspired algorithms, quantum versions of classical algorithms, and hybrid quantum-classical models, each offering unique advantages in processing speed and scalability. However, the rise of quantum computing also threatens conventional encryption methods like RSA and ECC, necessitating the development of quantum-resistant encryption techniques. Despite challenges posed by current quantum devices, QML's potential to revolutionize cloud security is immense, providing faster, more efficient, and robust protection against evolving cyber threats.

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