Analyzing Common Electronic Structure Theory Algorithms for Distributed Quantum Computing
July 02, 2025 Β· Declared Dead Β· π International Conference on Quantum Computing and Engineering
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Authors
Grier M. Jones, Hans-Arno Jacobsen
arXiv ID
2507.01902
Category
quant-ph: Quantum Computing
Cross-listed
cs.DC,
physics.chem-ph
Citations
1
Venue
International Conference on Quantum Computing and Engineering
Last Checked
5 months ago
Abstract
To move towards the utility era of quantum computing, many corporations have posed distributed quantum computing (DQC) as a framework for scaling the current generation of devices for practical applications. One of these applications is quantum chemistry, also known as electronic structure theory, which has been poised as a "killer application" of quantum computing, To this end, we analyze five electronic structure methods, found in common packages such as Tequila and ffsim, which can be easily interfaced with the Qiskit Circuit Cutting addon. Herein, we provide insights into cutting these algorithms using local operations (LO) to determine their aptitude for distribution. The key findings of our work are that many of these algorithms cannot be efficiently parallelized using LO, and new methods must be developed to apply electronic structure theory within a DQC framework.
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