Aug 2026· International Journal of Technology and Emerging Research· 0 citations· 12 references
TL;DR
This review systematically examines the relationship between cloud computing and quantum computing by analyzing their technical differences, capabilities, application areas, current challenges, limitations, and future research directions and indicates that cloud computing will continue to serve as the backbone of modern digital infrastructure, while quantum computing will enhance its capabilities for solving complex computational problems.
Abstract
Quantum computing has emerged as a transformative technology capable of solving complex computational problems beyond the capabilities of classical systems. However, severe hardware limitations, qubit decoherence, and high implementation costs prevent it from replacing classical cloud infrastructure. Instead, cloud and quantum computing are evolving as complementary technologies. Through Quantum-as-a-Service (QaaS) and hybrid cloud–quantum architectures, cloud platforms provide scalable infrastructure, data management, and resource orchestration, while quantum processors accelerate specialized computational tasks. This review systematically examines the relationship between cloud computing and quantum computing by analyzing their technical differences, capabilities, application areas, current challenges, limitations, and future research directions. The findings indicate that cloud computing will continue to serve as the backbone of modern digital infrastructure, while quantum computing will enhance its capabilities for solving complex computational problems. Together, these technologies are expected to drive the next generation of intelligent, scalable, and high-performance computing systems.
Keywords: cloud computing; quantum computing; Quantum as a Service (QaaS); Hybrid Cloud–Quantum Architecture; Post-Quantum Security; QMLOps
Performance evaluation demonstrates that the proposed communication interface architecture achieves reduced communication latency, improved transmission fidelity, enhanced scalability, optimized resource utilization, and stronger security compared with conventional quantum communication approaches.
B. Tejasri, Busa Praneeth, Dr T Anvesh· International Journal of Sci...· 0 citations
It is concluded that quantum computing is best positioned, in the near term, as a specialized co-processor rather than a general-purpose replacement for classical computing.
Claude Cockfield, Moses Garuba· Open Access Research Journal...· 0 citations
These quantitative findings demonstrate that tightly coupled hybrid co-processing, physically adjacent to the control electronics, is critical for extending the computational bound of Noisy Intermediate-Scale Quantum (NISQ) devices.
Akshay Joseph, R. Delhibabu· Frontiers of Computer Scienc...· 0 citations
Cloud-accessible quantum computing has made hardware comparison not only a physics benchmark but also a practical purchasing decision. Cost-aware comparison of quantum computers remains underexplored and is difficult to do under the heterogeneous billing models offered by various cloud-based quantum computing providers...
With the exponentially increasing global data volumes it is challenging to meet the ultra-low latency requirements of the next-generation sophisticated applications using the existing computing resources. Though multiple existing methods and approaches such as edge-and-cloud computing, high performance computing (HPC),...
Daniel C. Colon-Rivera, Juan D. Guadalupe-Rosado, Venkataramani Kumar et al.· National Aerospace and Elect...· 0 citations
Frontiers of Intelligent Computing and Cyber Technologies – Volume IV: Quantum Computing, Cryptography, and Network Technologies explores the rapidly evolving technologies that are transforming secure digital communication and next-generation computing. This volume provides a comprehensive introduction to quantum compu...