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  4. Toward variational quantum algorithms for generalized linear and nonlinear transport phenomena
 
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Toward variational quantum algorithms for generalized linear and nonlinear transport phenomena

Publikationstyp
Journal Article
Date Issued
2025-11-04
Sprache
English
Author(s)
Bengoechea Lozano, Sergio  
Fluiddynamik und Schiffstheorie M-8  
Over, Paul  orcid-logo
Fluiddynamik und Schiffstheorie M-8  
Jaksch, Dieter  
Rung, Thomas  orcid-logo
Fluiddynamik und Schiffstheorie M-8  
TORE-URI
https://hdl.handle.net/11420/58498
Journal
AIAA journal  
Citation
AIAA Journal (in Press): (2025)
Publisher DOI
10.2514/1.J065582
Publisher
AIAA
This article proposes a variational quantum algorithm to solve linear and nonlinear thermofluid dynamic transport equations. The hybrid classical-quantum framework is applied to problems governed by the heat, wave, and Burgers’ equations in combination with different engineering boundary conditions. Topics covered include the encoding of band matrices, as in the consideration of nonconstant material properties and upwind-biased first- and higher-order approximations, widely used in engineering computational fluid dynamics, by the use of a mask function. Verification examples demonstrate high predictive agreement with classical methods. Furthermore, the scalability analysis shows a polylog scaling of the number of quantum gates with the number of qubits. Remaining challenges refer to the implicit construction of upwind schemes and the identification of an appropriate parameterization strategy of the quantum ansatz.
DDC Class
600: Technology
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