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Improved Ising formulation of max-3-cut using higher-order spin interactions

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cris.virtual.department#PLACEHOLDER_PARENT_METADATA_VALUE#
cris.virtual.department#PLACEHOLDER_PARENT_METADATA_VALUE#
cris.virtual.orcid0000-0001-6259-464X
cris.virtual.orcid#PLACEHOLDER_PARENT_METADATA_VALUE#
cris.virtualsource.departmentdce1a63c-281d-4f6a-9c8d-26a3b1e77103
cris.virtualsource.department0286b813-1ead-48dc-af63-b1a1c94ca885
cris.virtualsource.orciddce1a63c-281d-4f6a-9c8d-26a3b1e77103
cris.virtualsource.orcid0286b813-1ead-48dc-af63-b1a1c94ca885
dc.contributor.authorDe Prins, Robbe
dc.contributor.authorVan der Sande, Guy
dc.contributor.authorBienstman, Peter
dc.contributor.authorVan Vaerenbergh, Thomas
dc.date.accessioned2026-08-31T11:49:38Z
dc.date.available2026-08-31T11:49:38Z
dc.date.createdwos2026
dc.date.issued2026
dc.description.abstractMany combinatorial optimization problems (COPs) are naturally expressed using variables that take on more than two discrete values. To solve such problems using Ising machines (IMs)—specialized analog or digital devices designed to solve COPs efficiently—these multivalued integers must be encoded using binary spin variables. A common approach is one-hot encoding, where each variable is represented by a group of spins constrained so that exactly one spin is in the “up” state. However, this encoding introduces energy barriers: changing an integer’s value requires flipping two spins and passing through an invalid intermediate state. This creates rugged energy landscapes that may hinder optimization. We propose a higher-order Ising formulation for max-3-cut, a canonical COP involving integers with three possible states that provides a minimal setting for assessing multivalued formulations on IMs. Our formulation preserves valid configurations under single-spin updates. The resulting energy landscapes are smoother, and we show that this remains true even when the binary variables are relaxed to continuous values, making it well suited for analog IMs as well. Benchmarking on such an IM, we find that the higher-order formulation leads to higher success rates and faster time-to-solution than when one-hot encoding is employed.
dc.description.wosFundingTextThis research was funded by the Prometheus Horizon Europe project 101070195. It was also funded by the Research Foundation Flanders (FWO) under grants G028618N,G029519N,G0A6L25N, and G006020N. Additional funding was provided by the EOS project "Photonic Ising Machines". This project (EOS number 40007536) has received funding from the FWO and FRS-FNRS under the Excellence of Science (EOS) program. The work was also partly supported by the Defense Advanced Research Projects Agency (DARPA) under Air Force Research Laboratory (AFRL) contract no. FA8650-23-3-7313. The resources and services used in this work were provided by the VSC (Flemish Supercomputer Center) , funded by the Research Foundation-Flanders (FWO) and the Flemish Government. R.D.P. performed the simulations and wrote the manuscript. G.V.d.S., P.B., and T.V.V. supervised the project. All authors discussed the results and reviewed the manuscript.
dc.identifier.doi10.1103/vqsv-jzk4
dc.identifier.issn2331-7019
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/60154
dc.language.isoeng
dc.provenance.editstepusergreet.vanhoof@imec.be
dc.publisherAMER PHYSICAL SOC
dc.source.beginpage044058
dc.source.issue4
dc.source.journalPHYSICAL REVIEW APPLIED
dc.source.numberofpages14
dc.source.volume25
dc.subject.keywordsOPTIMIZATION
dc.subject.keywordsPHYSICS
dc.title

Improved Ising formulation of max-3-cut using higher-order spin interactions

dc.typeJournal article
dspace.entity.typePublication
imec.internal.crawledAt2026-07-14
imec.internal.sourcecrawler
imec.internal.wosCreatedAt2026-07-14
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