Area of research
Nuclear and High Energy Physics · Geometry and Topology
Research interest
Research interests include Black Holes and Theoretical Physics, Quantum Chromodynamics and Particle Interactions, Particle physics theoretical and experimental studies, and Algebraic structures and combinatorial models.
Lattice models for phases and transitions with non-invertible symmetries
(2+1)d lattice models and tensor networks for gapped phases with categorical symmetry
Gapped phases with non-invertible symmetries: (1+1)d
The club sandwich: Gapless phases and phase transitions with non-invertible symmetries
Generalized charges, part II: Non-invertible symmetries and the symmetry TFT
Illustrating the categorical Landau paradigm in lattice models
Gapped phases in (2+1)d with non-invertible symmetries: Part I
Hasse diagrams for gapless SPT and SSB phases with non-invertible symmetries
SymTFT for (3+1)d gapless SPTs and obstructions to confinement
Generalized toric polygons, T-branes, and 5d SCFTs
Fusion 3-Categories for Duality Defects.
Categorical Symmetries in Spin Models with Atom Arrays.
Construction of a Gapless Phase with Haagerup Symmetry.
ICTP lectures on (non-)invertible generalized symmetries
Generalized charges, part I: Invertible symmetries and higher representations
Aspects of categorical symmetries from branes: SymTFTs and generalized charges
Aspects of categorical symmetries from branes: SymTFTs and generalized charges
Anomalies of generalized symmetries from solitonic defects
Generalized symmetries and anomalies of 3d $\mathcal{N}=4$ SCFTs
Categorical Landau Paradigm for Gapped Phases.
$G_2$-manifolds from 4d N=1 theories, part I: Domain walls
Noninvertible Symmetries from Holography and Branes
Symmetry TFTs from String Theory.
Noninvertible Symmetries from Holography and Branes.
Holography, 1-form symmetries, and confinement
5d superconformal field theories and graphs
4d
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-folds
Box graphs and resolutions I
Box Graphs and Singular Fibers
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