Volta

Simulation of Quantum Computers: Review and Acceleration Opportunities

Unknown authors · 2025
hash_id: 62772d55af2b6dc0512e7333401dff82225213bdd917ff692d7d4b6e0f6404cc · DOI: 10.1145/3762672

Quantum computing has the potential to revolutionise multiple fields by solving complex problems that cannot be solved in reasonable time with current classical computers. Nevertheless, the development of quantum computers is still in its early stages and the available systems have still very limited resources. As such, currently, the most practical way to develop and test quantum algorithms is to use classical simulators of quantum computers. In addition, the development of new quantum computers and their components also depends on simulations. Given the characteristics of a quantum computer, their simulation is a very demanding application in terms of both computation and memory. As such, simulations do not scale well in current classical systems. Thus different optimisation and approximation techniques need …

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References (9)

Quantum Emulators: CPU, single GPU and multiple GPUs performance comparison secondary
Quantum–Classical Hybrid Architecture for Solving the Muskat–Leverett Model secondary
Quantum Computing and Entrepreneurial Innovation: Opportunities, Disruption, an… secondary
Assessment of the Variational Quantum Eigensolver (VQE) for Bond Dissociation o… secondary
Supercomputer HEMUS: Benchmark Results and Performance Optimization secondary
A Divergent Index Tuning Advisor Using Quantum Machine Learning for Distributed… secondary
Scalable Quantum Circuit Simulation via Circuit Cutting and FPGA Acceleration secondary
Quantum–fluid correspondence for systems of nonrelativistic spin- 1 2 particles secondary
Circuit-Aware Hyperparameter Prediction for MPS Quantum Simulators secondary

Cited by (1)

Photonic Quantum Computing primary