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  4. Fourier Analysis of Variational Quantum Circuits for Supervised Learning
 
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2025
Conference Paper
Title

Fourier Analysis of Variational Quantum Circuits for Supervised Learning

Abstract
Variational quantum circuits (VQCs) can be understood through the lens of Fourier analysis. The function space represented by any circuit architecture can be described through a truncated Fourier sum. We show that the spectrum available to that truncated Fourier sum is not entirely determined by the encoding gates of the circuit, since the variational part of the circuit can constrain certain coefficients to zero, effectively removing that frequency from the spectrum. To the best of our knowledge, we give the first description of the functional dependence of the Fourier coefficients on the variational parameters as trigonometric polynomials. This allows us to provide an algorithm that computes the exact spectrum of any given circuit and the corresponding Fourier coefficients. Finally, we demonstrate that by comparing the Fourier transform of the dataset to the available spectra, it is possible to predict which VQC of a given list of choices will best fit the data.
Author(s)
Wiedmann, Marco  
Fraunhofer-Institut für Integrierte Schaltungen IIS  
Periyasamy, Maniraman
Fraunhofer-Institut für Integrierte Schaltungen IIS  
Scherer, Daniel David
Fraunhofer-Institut für Integrierte Schaltungen IIS  
Mainwork
IEEE Quantum Week 2025  
Funder
Bayern, Staatsministerium für Wirtschaft, Landesentwicklung und Energie  
Conference
International Conference on Quantum Computing and Engineering 2025  
Quantum Week 2025  
Quantum Science and Engineering Education Conference 2025  
DOI
10.1109/QCE65121.2025.00196
Language
English
Fraunhofer-Institut für Integrierte Schaltungen IIS  
Keyword(s)
  • fourier representation

  • quantum machine learning

  • supervised learning

  • variational quantum circuits

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