NeQST

NExt level Quantum information processing for Science and Technology

Grant period2022-11-01 - 2025-10-31
Funding bodyEuropean Union
Call numberHORIZON-CL4-2021-DIGITAL-EMERGING-02
Grant number101080086
IdentifierG:(EU-Grant)101080086

Note: Quantum computers are extremely promising emerging technologies with inter-disciplinary teams around the globe working on their development and implementation. Yet, progress is hampered by fundamental difficulties in scalability, end-user friendliness, certification of components and algorithms, and limited application scope to real-world problems. To overcome these urgent challenges, NeQST leverages an extended quantum information processing paradigm based on multi-level carriers of quantum information—qudits. Both the quantum hardware at the fundamental level, and many problems of scientific and technological relevance, are expressed in terms of multi-level systems, making this approach the most efficient choice to unlock the full potential of quantum computers and simulators. NeQST will generate foundational breakthroughs in the full value chain of qudit quantum information processing. These include qudit based firmware with scalable characterization and automatized design tools harnessing a larger Hilbert space; an end-user friendly high-level control and simulation software, enabling non-specialists to utilize the qudit hardware; the efficient simulation of quantum models of scientific relevance, such as gauge theories; the solution of optimization problems in academia and industry naturally phrased in terms of multi-level variables; and certification tools specifically designed for multi-level quantum information, enabling a device-independent validation of data. NeQST results will therefore elucidate the role of dimension in quantum physics and its use as a resource for quantum information processing. To achieve its ambitious goals, NeQST has assembled an inter-disciplinary team of leading academic and industry partners, and has developed a well-rounded work plan, as well as detailed dissemination and exploitation strategies.
   

Recent Publications

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http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Journal Article  ;  ;  ;  ;  ;  ;
Towards determining the (2+1)-dimensional Quantum Electrodynamics running coupling with Monte Carlo and quantum computing methods
Communications Physics 8(1), 367 () [10.1038/s42005-025-02243-6]  GO OpenAccess  Download fulltext Files  Download fulltextFulltext by arXiv.org BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Preprint  ;  ;  ;  ;  ;  ;
Towards determining the (2+1)-dimensional Quantum Electrodynamics running coupling with Monte Carlo and quantum computing methods
[10.3204/PUBDB-2025-02523]  GO OpenAccess  Download fulltext Files  Download fulltextFulltext by arXiv.org BibTeX | EndNote: XML, Text | RIS

http://join2-wiki.gsi.de/foswiki/pub/Main/Artwork/join2_logo100x88.png Contribution to a conference proceedings/Journal Article  ;  ;  ;  ;
Thermodynamics of non-Abelian D$_4$ lattice gauge theory via Quantum Metropolis Sampling
40th International Symposium on Lattice Field Theory, Lattice 2023, BataviaBatavia, United States, 30 Jul 2023 - 5 Aug 20232023-07-302023-08-05 Proceedings of Science / International School for Advanced Studies (LATTICE2023), 224 () [10.22323/1.453.0224]  GO OpenAccess  Download fulltext Files BibTeX | EndNote: XML, Text | RIS

All known publications ...
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 Record created 2023-02-23, last modified 2023-02-23



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