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	<pub:InProceedings rdf:about="http://ebiquity.umbc.edu/paper/html/id/1019/Quantum-Assisted-Greedy-Algorithms">
		<rdfs:label><![CDATA[Quantum-Assisted Greedy Algorithms]]></rdfs:label>
		<pub:title><![CDATA[Quantum-Assisted Greedy Algorithms]]></pub:title>
		<pub:publishedOn rdf:datatype="&xsd;dateTime">2022-07-17T00:00:00-05:00</pub:publishedOn>
		<pub:abstract><![CDATA[<p>We show how to leverage quantum annealers (QAs) to better select candidates in greedy algorithms. Unlike conventional greedy algorithms that employ problem-specific heuristics for making locally optimal choices at each stage, we use QAs that sample from the ground state of problem-dependent Hamiltonians at cryogenic temperatures and use retrieved samples to estimate the probability distribution of problem variables. More specifically, we look at each spin of the Ising model as a random variable and contract all problem variables whose corresponding uncertainties are negligible. Our empirical results on a D-Wave 2000Q quantum processor demonstrate that the proposed quantum-assisted greedy algorithm (QAGA) scheme can find notably better solutions compared to the state-of-the-art techniques in the realm of quantum annealing</p>

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		<pub:pages><![CDATA[4911-4914]]></pub:pages>
		<pub:note><![CDATA[<b>doi:</ab> <a href="http://doi.org/10.1109/IGARSS46834.2022.9884795">10.1109/IGARSS46834.2022.9884795</a>]]></pub:note>
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		<pub:tag><![CDATA[greedy algorithms]]></pub:tag>
		<pub:tag><![CDATA[optimization]]></pub:tag>
		<pub:tag><![CDATA[quantum]]></pub:tag>
		<pub:tag><![CDATA[quantum annealing]]></pub:tag>
		<pub:tag><![CDATA[quantum computing]]></pub:tag>
		<pub:booktitle><![CDATA[Proceedings of the International Geoscience and Remote Sensing Symposium (IGARSS)]]></pub:booktitle>
		<pub:publisher><![CDATA[IEEE]]></pub:publisher>
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