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From the 1 of 7 linked papers with an AI index.

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7 papers

cond-mat.str-el2026

Rhombohedral Graphene: A Tale of Many Crystals

Ahmed Abouelkomsan, Filippo Gaggioli, Daniele Guerci +1

Experiments on rhombohedral graphene have uncovered an extraordinary wealth of correlated quantum phases - from chiral superconductors to electronic crystals - all within a single…

cond-mat.str-el2026

Accurate Self-Attention Wavefunctions at Large Scale

Filippo Gaggioli, Sam Azadi, Liang Fu

The authors apply self‑attention neural network variational wavefunctions to the two‑dimensional homogeneous electron gas with up to 169 particles, achieving energies lower than st…

cond-mat.str-el2026

Quantum Electron Quasicrystal

Pierre-Antoine Graham, Filippo Gaggioli, Liang Fu

The strongly correlated phases of the homogeneous electron gas constitute the vocabulary of many-body condensed matter physics and find a natural realization in semiconductors. In…

cond-mat.str-el2026

Artificial Intelligence for Quantum Matter: Finding a Needle in a Haystack

Khachatur Nazaryan, Filippo Gaggioli, Yi Teng +1

Neural networks (NNs) have great potential in solving the ground state of various many-body problems. However, several key challenges remain to be overcome before NNs can tackle pr…

cond-mat.str-el2025

Electronic crystals and quasicrystals in semiconductor quantum wells: an AI-powered discovery

Filippo Gaggioli, Pierre-Antoine Graham, Liang Fu

The homogeneous electron gas is a cornerstone of quantum condensed matter physics, providing the foundation for developing density functional theory and understanding electronic ph…

cond-mat.mtrl-sci20253 cited

Higher-dimensional Fermiology in bulk moiré metals

Kevin P. Nuckolls, Nisarga Paul, Alan Chen +10

In the past decade, moiré materials have revolutionized how we engineer and control quantum phases of matter. Among incommensurate materials, moiré materials are aperiodic compos…