AI 中文总结
研究量子电路可视化的设计空间,通过分析多种来源的案例贡献设计空间,探讨其与现有原则的关系及独特之处,并总结未来系统在数据结构、认知和可集成性方面的机会。
AI 中文摘要
量子电路可视化在辅助理解和交流量子程序方面起着至关重要的作用。虽然有多种工具可用于绘制量子电路,但由于机器和平台供应商的特性,它们在编码选项上差异很大。我们发现有机会将这些不同的绘制方法整合到一个统一的语法之下,以实现量子电路可视化的一致、跨平台增强。然而,尚不清楚如何设计这样的语法来最好地支持量子计算社区。为此,我们通过分析从在线教程、文档、研究出版物、公开演示和先前系统中收集的182个静态和12个交互式案例,贡献了一个量子电路可视化的设计空间。基于我们的分析,我们讨论了我们的设计空间如何与现有可视化原则相关联但又展现出独特之处。我们最后总结了未来系统在数据结构、认知和可集成性方面的机会。
英文摘要
Quantum circuit visualizations play an essential role in supporting sense-making and communication of quantum programs. While several tools exist for rendering quantum circuits, they vary widely in encoding options due to idiosyncrasies among machine and platform providers. We observe an opportunity to coalesce these disparate rendering approaches under a single, unified grammar to enable consistent, cross-platform enhancement of quantum circuit visualizations. However, it is unclear how to design such a grammar to best support the quantum computing community. Towards this end, we contribute a design space of quantum circuit visualizations by analyzing 182 static and 12 interactive cases collected from online tutorials and documentations, research publications, public presentations, and prior systems. Based on our analysis, we discuss how our design space relates to existing visualization principles yet exhibits unique aspects. We conclude with opportunities for future systems regarding data structure, cognition, and integrability.
CommentsAccepted to IEEE VIS 2026 Full Paper, 11 pages, 13 figures