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Quantum Information and Computation for Chemistry

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arxiv 1706.05413 v2 pith:IBMOF4C5 submitted 2017-06-16 quant-ph physics.chem-ph

classification quant-phphysics.chem-ph
keywords chemistryinformationquantumresearchworkshopfieldsalgorithmsarea
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The NSF Workshop in Quantum Information and Computation for Chemistry assembled experts from directly quantum-oriented fields such as algorithms, chemistry, machine learning, optics, simulation, and metrology, as well as experts in related fields such as condensed matter physics, biochemistry, physical chemistry, inorganic and organic chemistry, and spectroscopy. The goal of the workshop was to summarize recent progress in research at the interface of quantum information science and chemistry as well as to discuss the promising research challenges and opportunities in the field. Furthermore, the workshop hoped to identify target areas where cross fertilization among these fields would result in the largest payoff for developments in theory, algorithms, and experimental techniques. The ideas can be broadly categorized in two distinct areas of research that obviously have interactions and are not separated cleanly. The first area is quantum information for chemistry, or how quantum information tools, both experimental and theoretical can aid in our understanding of a wide range of problems pertaining to chemistry. The second area is chemistry for quantum information, which aims to discuss the several aspects where research in the chemical sciences can aid progress in quantum information science and technology. The results of the workshop are summarized in this report.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. QuanUML: Towards A Modeling Language for Model-Driven Quantum Software Development

    cs.SE 2025-06 conditional novelty 5.0 of 10

    QuanUML extends UML with stereotypes and sequence-diagram conventions for qubits, gates, measurements, and classical control, demonstrated on dynamic circuits and Shor's algorithm.

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