most citedQuantum computing and artificial intelligence: status and perspectives

2 citations · 3 across the 3 of their papers we have counts for

collaborators

5 papers

cs.LG2025

Neural surrogates for designing gravitational wave detectors

Carlos Ruiz-Gonzalez, Sören Arlt, Sebastian Lehner +5

Physics simulators are essential in science and engineering, enabling the analysis, control, and design of complex systems. In experimental sciences, they are increasingly used to…

cs.AI20251 cited

Towards autonomous quantum physics research using LLM agents with access to intelligent tools

Sören Arlt, Xuemei Gu, Mario Krenn

Artificial intelligence (AI) is used in numerous fields of science, yet the initial research questions and targets are still almost always provided by human researchers. AI-generat…

quant-ph2025

Automated discovery of high-dimensional multipartite entanglement with photons that never interacted

Sören Arlt, Mario Krenn, Xuemei Gu

Quantum entanglement across spatially separated network nodes is conventionally established through the distribution of photons from a common source or via entanglement swapping th…

quant-ph20252 cited

Quantum computing and artificial intelligence: status and perspectives

Giovanni Acampora, Andris Ambainis, Natalia Ares +36

This white paper discusses and explores the various points of intersection between quantum computing and artificial intelligence (AI). It describes how quantum computing could supp…

cs.LG2024

Discovering emergent connections in quantum physics research via dynamic word embeddings

Felix Frohnert, Xuemei Gu, Mario Krenn +1

As the field of quantum physics evolves, researchers naturally form subgroups focusing on specialized problems. While this encourages in-depth exploration, it can limit the exchang…