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Quantum Angle Generator for Image Generation
The Quantum Angle Generator (QAG) is a new generative model for quantum computers. It consists of a parameterized quantum circuit trained with an objective function. The QAG model utilizes angle encoding for the conversion between the generated quantum data and classical data. Therefore, it requires...
Autores principales: | , , , , , , |
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Lenguaje: | eng |
Publicado: |
2022
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1109/SEC54971.2022.00064 http://cds.cern.ch/record/2861317 |
_version_ | 1780977813843607552 |
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author | Florian, Rehm Vallecorsa Sofia Grossi Michele Kerstin, Borras Krücker Dirk Schnake Simon Alexis-Harilaos, Verney-Provatas |
author_facet | Florian, Rehm Vallecorsa Sofia Grossi Michele Kerstin, Borras Krücker Dirk Schnake Simon Alexis-Harilaos, Verney-Provatas |
author_sort | Florian, Rehm |
collection | CERN |
description | The Quantum Angle Generator (QAG) is a new generative model for quantum computers. It consists of a parameterized quantum circuit trained with an objective function. The QAG model utilizes angle encoding for the conversion between the generated quantum data and classical data. Therefore, it requires one qubit per feature or pixel, while the output resolution is adjusted by the number of shots performing the image generation. This approach allows the generation of highly precise images on recent quantum computers. In this paper, the model is optimised for a High Energy Physics (HEP) use case generating simplified one-dimensional images measured by a specific particle detector, a calorimeter. With a reasonable number of shots, the QAG model achieves an elevated level of accuracy. The advantages of the QAG model are lined out - such as simple and stable training, a reasonable amount of qubits, circuit calls, circuit size and computation time compared to other quantum generative models, e.g. quantum GANs (qGANs) and Quantum Circuit Born Machines. |
id | cern-2861317 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28613172023-06-09T20:08:09Zdoi:10.1109/SEC54971.2022.00064http://cds.cern.ch/record/2861317engFlorian, RehmVallecorsa SofiaGrossi MicheleKerstin, BorrasKrücker DirkSchnake SimonAlexis-Harilaos, Verney-ProvatasQuantum Angle Generator for Image GenerationComputing and ComputersQuantum TechnologyThe Quantum Angle Generator (QAG) is a new generative model for quantum computers. It consists of a parameterized quantum circuit trained with an objective function. The QAG model utilizes angle encoding for the conversion between the generated quantum data and classical data. Therefore, it requires one qubit per feature or pixel, while the output resolution is adjusted by the number of shots performing the image generation. This approach allows the generation of highly precise images on recent quantum computers. In this paper, the model is optimised for a High Energy Physics (HEP) use case generating simplified one-dimensional images measured by a specific particle detector, a calorimeter. With a reasonable number of shots, the QAG model achieves an elevated level of accuracy. The advantages of the QAG model are lined out - such as simple and stable training, a reasonable amount of qubits, circuit calls, circuit size and computation time compared to other quantum generative models, e.g. quantum GANs (qGANs) and Quantum Circuit Born Machines.oai:cds.cern.ch:28613172022 |
spellingShingle | Computing and Computers Quantum Technology Florian, Rehm Vallecorsa Sofia Grossi Michele Kerstin, Borras Krücker Dirk Schnake Simon Alexis-Harilaos, Verney-Provatas Quantum Angle Generator for Image Generation |
title | Quantum Angle Generator for Image Generation |
title_full | Quantum Angle Generator for Image Generation |
title_fullStr | Quantum Angle Generator for Image Generation |
title_full_unstemmed | Quantum Angle Generator for Image Generation |
title_short | Quantum Angle Generator for Image Generation |
title_sort | quantum angle generator for image generation |
topic | Computing and Computers Quantum Technology |
url | https://dx.doi.org/10.1109/SEC54971.2022.00064 http://cds.cern.ch/record/2861317 |
work_keys_str_mv | AT florianrehm quantumanglegeneratorforimagegeneration AT vallecorsasofia quantumanglegeneratorforimagegeneration AT grossimichele quantumanglegeneratorforimagegeneration AT kerstinborras quantumanglegeneratorforimagegeneration AT kruckerdirk quantumanglegeneratorforimagegeneration AT schnakesimon quantumanglegeneratorforimagegeneration AT alexisharilaosverneyprovatas quantumanglegeneratorforimagegeneration |