Quantum compression with classically simulatable circuits

  • As we continue to find applications where the currently available noisy devices exhibit an advantage over their classical counterparts, the efficient use of quantum resources is highly desirable. The notion of quantum autoencoders was proposed as a way for the compression of quantum information to reduce resource requirements. Here, we present a strategy to design quantum autoencoders using evolutionary algorithms for transforming quantum information into lower-dimensional representations. We successfully demonstrate the initial applications of the algorithm for compressing different families of quantum states. In particular, we point out that using a restricted gate set in the algorithm allows for efficient simulation of the generated circuits. This approach opens the possibility of using classical logic to find low representations of quantum data, using fewer computational resources.

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Metadaten
Author:Abhinav Anand, Jakob S. KottmannORCiDGND, Alán Aspuru-Guzik
Frontdoor URLhttps://opus.bibliothek.uni-augsburg.de/opus4/102007
Parent Title (English):arXiv
Publisher:arXiv
Type:Preprint
Language:English
Year of first Publication:2022
Release Date:2023/02/14
Issue:arXiv:2207.02961
DOI:https://doi.org/10.48550/arXiv.2207.02961
Institutes:Fakultät für Angewandte Informatik
Fakultät für Angewandte Informatik / Institut für Informatik
Fakultät für Angewandte Informatik / Institut für Informatik / Professur für Quantenalgorithmik
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