Quantum Computing: A Paradigm Shift in Distributed Systems Resource Optimization

Authors

  • Rakesh Chowdary Ganta University of Illinois at Chicago, USA

DOI:

https://doi.org/10.32996/jcsts.2025.7.4.28

Keywords:

Quantum Computing, Distributed Systems, Resource Optimization, Microservice Architecture, Hybrid Computing

Abstract

Quantum computing emerges as a revolutionary force in distributed systems optimization, fundamentally transforming resource allocation and system management paradigms. The integration of quantum algorithms with classical infrastructure introduces unprecedented capabilities in addressing complex optimization challenges in microservice architectures. Through quantum-enhanced protocols and hybrid quantum-classical systems, distributed computing achieves remarkable improvements in efficiency, scalability, and performance. The combination of Quantum Approximate Optimization Algorithm (QAOA) and Variational Quantum Eigensolver (VQE) with traditional computing frameworks enables superior resource management, enhanced decision-making capabilities, and optimized service mesh configurations. This convergence of quantum and classical computing paradigms paves the way for next-generation distributed systems that can handle increasingly complex optimization challenges while maintaining operational efficiency.

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Published

2025-05-12

Issue

Section

Research Article

How to Cite

Rakesh Chowdary Ganta. (2025). Quantum Computing: A Paradigm Shift in Distributed Systems Resource Optimization. Journal of Computer Science and Technology Studies, 7(4), 234-239. https://doi.org/10.32996/jcsts.2025.7.4.28