Quantum Combinatorial Optimization in the NISQ Era: A Systematic Mapping Study

Author:

Gemeinhardt Felix1ORCID,Garmendia Antonio2ORCID,Wimmer Manuel3ORCID,Weder Benjamin4ORCID,Leymann Frank4ORCID

Affiliation:

1. Johannes Kepler University Linz, Institute for Business Informatics - Software Engineering CDL-MINT, Austria

2. Universidad Autónoma de Madrid, Modelling & Software Engineering Research Group, Spain

3. Johannes Kepler University Linz, Institute for Business Informatics - SoftwareEngineering CDL-MINT, Austria

4. University of Stuttgart, Institute of Architecture of Application Systems (IAAS), Germany

Abstract

The application of quantum computing to combinatorial optimization problems is attracting increasing research interest, resulting in diverse approaches and research streams. This study aims at identifying, classifying, and understanding existing solution approaches as well as typical use cases in the field. The obtained classification schemes are based on a full-text analysis of 156 included papers. Our results can be used by researchers and practitioners to (i) better understand adaptations to and utilizations of existing gate-based and quantum annealing approaches and (ii) identify typical use cases for quantum computing in areas such as graph optimization, routing, and scheduling.

Funder

Austrian Federal Ministry for Digital and Economic Affairs and the National Foundation for Research, Technology and Development and by the Austrian Science Fund

Federal Ministry for Economic Affairs and Climate Action

Spanish MICINN

Publisher

Association for Computing Machinery (ACM)

Subject

General Computer Science,Theoretical Computer Science

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