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Distributed Quantum Computing and Network Control for Accelerated VQE
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Interconnecting small quantum computers will be essential in the future for creating large scale, robust quantum computers. Methods for distributing monolithic quantum algorithms efficiently are thus needed. In this work we consider an approach for distributing the accelerated variational quantum eigensolver (AVQE) algorithm over arbitrary sized - in terms of number of qubits - distributed quantum computers. We consider approaches for distributing qubit assignments of the Ansatz states required to estimate the expectation value of Hamiltonian operators in quantum chemistry in a parallelized computation and provide a systematic approach to generate distributed quantum circuits for distributed quantum computing. Moreover, we propose an architecture for a distributed quantum control system in the settings of centralized and decentralized network control.
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Cited by 1 Pith paper
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CloudQC: A Network-aware Framework for Multi-tenant Distributed Quantum Computing
A multi-tenant distributed quantum computing framework combining circuit placement with priority-based network scheduling cuts simulated job completion time versus earlier single-circuit methods.
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