Compilation strategies for quantum network programs using Qoala

Fuente: arXiv
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Autores principales: Oslovich, Samuel, van der Vecht, Bart, Wehner, Stephanie
Formato: Preprint
Publicado: 2025
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author Oslovich, Samuel
van der Vecht, Bart
Wehner, Stephanie
author_facet Oslovich, Samuel
van der Vecht, Bart
Wehner, Stephanie
contents Execution of quantum network applications requires a software stack for nodes. Recently, the first designs and demonstrations have been proposed for such software stacks, including QNodeOS and its extension, Qoala. The latter enables compilation strategies previously not possible in QNodeOS. Here, we show how the extensions provided by Qoala can be used by a compiler to improve the performance of quantum network applications. We define new compilation strategies that allow the compiler to influence the scheduling and execution of quantum programs on a quantum network node. Through simulation, we demonstrate that our compilation strategies can reduce the execution time by up to 29.53% and increase the success probability by up to 25.12%. Our work highlights the potential of compiler optimizations for quantum network programs.
format Preprint
id arxiv_https___arxiv_org_abs_2505_06162
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Compilation strategies for quantum network programs using Qoala
Oslovich, Samuel
van der Vecht, Bart
Wehner, Stephanie
Quantum Physics
Execution of quantum network applications requires a software stack for nodes. Recently, the first designs and demonstrations have been proposed for such software stacks, including QNodeOS and its extension, Qoala. The latter enables compilation strategies previously not possible in QNodeOS. Here, we show how the extensions provided by Qoala can be used by a compiler to improve the performance of quantum network applications. We define new compilation strategies that allow the compiler to influence the scheduling and execution of quantum programs on a quantum network node. Through simulation, we demonstrate that our compilation strategies can reduce the execution time by up to 29.53% and increase the success probability by up to 25.12%. Our work highlights the potential of compiler optimizations for quantum network programs.
title Compilation strategies for quantum network programs using Qoala
topic Quantum Physics
url https://arxiv.org/abs/2505.06162