El Agente Cuantico: Automating quantum simulations

Fuente: arXiv
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Hauptverfasser: Gustin, Ignacio, Calderón, Luis Mantilla, Pérez-Sánchez, Juan B., Gonthier, Jérôme F., Nakamura, Yuma, Panicker, Karthik, Ramprasad, Manav, Zhang, Zijian, Zou, Yunheng, Bernales, Varinia, Aspuru-Guzik, Alán
Format: Preprint
Veröffentlicht: 2025
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author Gustin, Ignacio
Calderón, Luis Mantilla
Pérez-Sánchez, Juan B.
Gonthier, Jérôme F.
Nakamura, Yuma
Panicker, Karthik
Ramprasad, Manav
Zhang, Zijian
Zou, Yunheng
Bernales, Varinia
Aspuru-Guzik, Alán
author_facet Gustin, Ignacio
Calderón, Luis Mantilla
Pérez-Sánchez, Juan B.
Gonthier, Jérôme F.
Nakamura, Yuma
Panicker, Karthik
Ramprasad, Manav
Zhang, Zijian
Zou, Yunheng
Bernales, Varinia
Aspuru-Guzik, Alán
contents Quantum simulation is central to understanding and designing quantum systems across physics and chemistry. Yet it has barriers to access from both computational complexity and computational perspectives, due to the exponential growth of Hilbert space and the complexity of modern software tools. Here we introduce{\cinzel El Agente Cuántico}, a multi-agent AI system that automates quantum-simulation workflows by translating natural-language scientific intent into executed and validated computations across heterogeneous quantum-software frameworks. By reasoning directly over library documentation and APIs, our agentic system dynamically assembles end-to-end simulations spanning state preparation, closed- and open-system dynamics, tensor-network methods, quantum control, quantum error correction, and quantum resource estimation. The developed system unifies traditionally distinct simulation paradigms behind a single natural-language interface. Beyond reducing technical barriers, this approach opens a path toward scalable, adaptive, and increasingly autonomous quantum simulation, enabling faster exploration of physical models, rapid hypothesis testing, and closer integration between theory, simulation, and emerging quantum hardware.
format Preprint
id arxiv_https___arxiv_org_abs_2512_18847
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle El Agente Cuantico: Automating quantum simulations
Gustin, Ignacio
Calderón, Luis Mantilla
Pérez-Sánchez, Juan B.
Gonthier, Jérôme F.
Nakamura, Yuma
Panicker, Karthik
Ramprasad, Manav
Zhang, Zijian
Zou, Yunheng
Bernales, Varinia
Aspuru-Guzik, Alán
Quantum Physics
Computational Physics
Quantum simulation is central to understanding and designing quantum systems across physics and chemistry. Yet it has barriers to access from both computational complexity and computational perspectives, due to the exponential growth of Hilbert space and the complexity of modern software tools. Here we introduce{\cinzel El Agente Cuántico}, a multi-agent AI system that automates quantum-simulation workflows by translating natural-language scientific intent into executed and validated computations across heterogeneous quantum-software frameworks. By reasoning directly over library documentation and APIs, our agentic system dynamically assembles end-to-end simulations spanning state preparation, closed- and open-system dynamics, tensor-network methods, quantum control, quantum error correction, and quantum resource estimation. The developed system unifies traditionally distinct simulation paradigms behind a single natural-language interface. Beyond reducing technical barriers, this approach opens a path toward scalable, adaptive, and increasingly autonomous quantum simulation, enabling faster exploration of physical models, rapid hypothesis testing, and closer integration between theory, simulation, and emerging quantum hardware.
title El Agente Cuantico: Automating quantum simulations
topic Quantum Physics
Computational Physics
url https://arxiv.org/abs/2512.18847