多物理
计算机科学
蓝图
纳米光子学
光子学
编码(社会科学)
迭代设计
人机交互
设计工具
编码(集合论)
计算
代码生成
替代模型
电子工程
系统工程
电子设计自动化
设计周期
加速度
电介质
概念设计
形式主义(音乐)
设计方法
系统设计
工具链
工程设计过程
计算机体系结构
编码(内存)
计算机工程
作者
Robert Lupoiu,Yixuan Shao,Tianxiang Dai,Chenkai Mao,Kofi Edée,Jonathan A. Fan
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-10-31
卷期号:11 (44): eadx8006-eadx8006
被引量:18
标识
DOI:10.1126/sciadv.adx8006
摘要
Innovation in nanophotonics currently relies on human experts who synergize specialized knowledge in photonics and coding with simulation and optimization algorithms, entailing design cycles that are time-consuming, computationally demanding, and frequently suboptimal. We introduce MetaChat, a multi-agentic design framework that can translate semantically described photonic design goals into high-performance, freeform device layouts in an automated, nearly real-time manner. Multistep reasoning is enabled by our Agentic Iterative Monologue paradigm, which coherently interfaces agents with code-based tools, other specialized agents, and human designers. Design acceleration is facilitated by Feature-wise Linear Modulation-conditioned Maxwell surrogate solvers that support the generalized evaluation of metasurface structures. We use freeform dielectric metasurfaces as a model system and demonstrate with MetaChat the design of multiobjective, multiwavelength metasurfaces orders of magnitude faster than conventional methods. These concepts present a scientific computing blueprint for using specialist design agents, surrogate solvers, and human interactions to drive multiphysics innovation and discovery.
科研通智能强力驱动
Strongly Powered by AbleSci AI