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Dimensional Expressivity Analysis of Parametric Quantum Circuits

<!--HTML-->Parametric quantum circuits play a crucial role in the performance of many variational quantum algorithms. To successfully implement such algorithms, one must design efficient quantum circuits that sufficiently approximate the solution space while maintaining a low parameter count a...

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Autor principal: Funcke, Lena
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:http://cds.cern.ch/record/2775725
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author Funcke, Lena
author_facet Funcke, Lena
author_sort Funcke, Lena
collection CERN
description <!--HTML-->Parametric quantum circuits play a crucial role in the performance of many variational quantum algorithms. To successfully implement such algorithms, one must design efficient quantum circuits that sufficiently approximate the solution space while maintaining a low parameter count and circuit depth. In this talk, we present a method to analyze the dimensional expressivity of parametric quantum circuits. This technique allows for identifying superfluous parameters in the circuit layout and for obtaining a maximally expressive ansatz with a minimum number of parameters. Using a hybrid quantum-classical approach, we show how to efficiently implement the expressivity analysis using quantum hardware, and we provide a proof of principle demonstration of this procedure on IBM's quantum hardware. We also discuss the effect of symmetries and demonstrate how to incorporate or remove symmetries from the parametrized ansatz.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
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spelling cern-27757252022-11-02T22:35:29Zhttp://cds.cern.ch/record/2775725engFuncke, LenaDimensional Expressivity Analysis of Parametric Quantum CircuitsPerspectives on Quantum Sensing and Computation for Particle PhysicsTH institutes<!--HTML-->Parametric quantum circuits play a crucial role in the performance of many variational quantum algorithms. To successfully implement such algorithms, one must design efficient quantum circuits that sufficiently approximate the solution space while maintaining a low parameter count and circuit depth. In this talk, we present a method to analyze the dimensional expressivity of parametric quantum circuits. This technique allows for identifying superfluous parameters in the circuit layout and for obtaining a maximally expressive ansatz with a minimum number of parameters. Using a hybrid quantum-classical approach, we show how to efficiently implement the expressivity analysis using quantum hardware, and we provide a proof of principle demonstration of this procedure on IBM's quantum hardware. We also discuss the effect of symmetries and demonstrate how to incorporate or remove symmetries from the parametrized ansatz.oai:cds.cern.ch:27757252021
spellingShingle TH institutes
Funcke, Lena
Dimensional Expressivity Analysis of Parametric Quantum Circuits
title Dimensional Expressivity Analysis of Parametric Quantum Circuits
title_full Dimensional Expressivity Analysis of Parametric Quantum Circuits
title_fullStr Dimensional Expressivity Analysis of Parametric Quantum Circuits
title_full_unstemmed Dimensional Expressivity Analysis of Parametric Quantum Circuits
title_short Dimensional Expressivity Analysis of Parametric Quantum Circuits
title_sort dimensional expressivity analysis of parametric quantum circuits
topic TH institutes
url http://cds.cern.ch/record/2775725
work_keys_str_mv AT funckelena dimensionalexpressivityanalysisofparametricquantumcircuits
AT funckelena perspectivesonquantumsensingandcomputationforparticlephysics