VACSEN: A Visualization Approach for Noise Awareness in Quantum Computing
Quantum computing has attracted considerable public attention due to its exponential speedup over classical computing. Despite its advantages, today's quantum computers intrinsically suffer from noise and are error-prone. To guarantee the high fidelity of the execution result of a quantum algor...
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sg-smu-ink.sis_research-87992023-04-04T03:13:38Z VACSEN: A Visualization Approach for Noise Awareness in Quantum Computing RUAN, Shaolun WANG, Yong JIANG, Weiwen MAO, Ying GUAN, Qiang Quantum computing has attracted considerable public attention due to its exponential speedup over classical computing. Despite its advantages, today's quantum computers intrinsically suffer from noise and are error-prone. To guarantee the high fidelity of the execution result of a quantum algorithm, it is crucial to inform users of the noises of the used quantum computer and the compiled physical circuits. However, an intuitive and systematic way to make users aware of the quantum computing noise is still missing. In this paper, we fill the gap by proposing a novel visualization approach to achieve noise-aware quantum computing. It provides a holistic picture of the noise of quantum computing through multiple interactively coordinated views: a Computer Evolution View with a circuit-like design overviews the temporal evolution of the noises of different quantum computers, a Circuit Filtering View facilitates quick filtering of multiple compiled physical circuits for the same quantum algorithm, and a Circuit Comparison View with a coupled bar chart enables detailed comparison of the filtered compiled circuits. We extensively evaluate the performance of VACSEN through two case studies on quantum algorithms of different scales and in-depth interviews with 12 quantum computing users. The results demonstrate the effectiveness and usability of VACSEN in achieving noise-aware quantum computing. 2023-01-01T08:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/7796 info:doi/10.1109/TVCG.2022.3209455 https://ink.library.smu.edu.sg/context/sis_research/article/8799/viewcontent/Vacsen_av.pdf http://creativecommons.org/licenses/by-nc-nd/4.0/ Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Data visualization noise awareness quantum computing Databases and Information Systems Numerical Analysis and Scientific Computing |
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Data visualization noise awareness quantum computing Databases and Information Systems Numerical Analysis and Scientific Computing RUAN, Shaolun WANG, Yong JIANG, Weiwen MAO, Ying GUAN, Qiang VACSEN: A Visualization Approach for Noise Awareness in Quantum Computing |
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Quantum computing has attracted considerable public attention due to its exponential speedup over classical computing. Despite its advantages, today's quantum computers intrinsically suffer from noise and are error-prone. To guarantee the high fidelity of the execution result of a quantum algorithm, it is crucial to inform users of the noises of the used quantum computer and the compiled physical circuits. However, an intuitive and systematic way to make users aware of the quantum computing noise is still missing. In this paper, we fill the gap by proposing a novel visualization approach to achieve noise-aware quantum computing. It provides a holistic picture of the noise of quantum computing through multiple interactively coordinated views: a Computer Evolution View with a circuit-like design overviews the temporal evolution of the noises of different quantum computers, a Circuit Filtering View facilitates quick filtering of multiple compiled physical circuits for the same quantum algorithm, and a Circuit Comparison View with a coupled bar chart enables detailed comparison of the filtered compiled circuits. We extensively evaluate the performance of VACSEN through two case studies on quantum algorithms of different scales and in-depth interviews with 12 quantum computing users. The results demonstrate the effectiveness and usability of VACSEN in achieving noise-aware quantum computing. |
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text |
author |
RUAN, Shaolun WANG, Yong JIANG, Weiwen MAO, Ying GUAN, Qiang |
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RUAN, Shaolun WANG, Yong JIANG, Weiwen MAO, Ying GUAN, Qiang |
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RUAN, Shaolun |
title |
VACSEN: A Visualization Approach for Noise Awareness in Quantum Computing |
title_short |
VACSEN: A Visualization Approach for Noise Awareness in Quantum Computing |
title_full |
VACSEN: A Visualization Approach for Noise Awareness in Quantum Computing |
title_fullStr |
VACSEN: A Visualization Approach for Noise Awareness in Quantum Computing |
title_full_unstemmed |
VACSEN: A Visualization Approach for Noise Awareness in Quantum Computing |
title_sort |
vacsen: a visualization approach for noise awareness in quantum computing |
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Institutional Knowledge at Singapore Management University |
publishDate |
2023 |
url |
https://ink.library.smu.edu.sg/sis_research/7796 https://ink.library.smu.edu.sg/context/sis_research/article/8799/viewcontent/Vacsen_av.pdf |
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