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Explore integrability in condensed matter physics and quantum field theory through the quantum deformed Haldane Shastry model at q=i.
Explore the mathematical foundations of ODE/IM correspondence, bridging condensed matter physics and quantum field theory with integrability concepts.
Explore integrability in Calogero-Sutherland models using Bethe ansatz techniques, focusing on applications in condensed matter physics and quantum field theory.
Explore integrable sigma models at RG fixed points and their quantization as affine Gaudin models in condensed matter physics and quantum field theory.
Explore Gaudin integrability in conformal blocks, delving into its applications in condensed matter physics and quantum field theory.
Explore constant mean curvature embeddings and the Fateev model in integrable quantum field theory, focusing on applications in condensed matter physics.
Explore integrability in condensed matter physics and quantum field theory, focusing on reflection relations and singular vectors.
Explore the Tracy-Widom distribution's role in supersymmetric gauge theories, focusing on integrability in condensed matter physics and quantum field theory.
Explore integrability in condensed matter physics and quantum field theory, focusing on snake modules, extended T systems, and correlation functions for higher rank systems.
Explore integrability in condensed matter physics and quantum field theory through double scaling limits of rectangular fishnets.
Explore critical behavior in staggered six-vertex models, focusing on boundary condition effects and integrability in condensed matter physics and quantum field theory.
Explore fusion products and finite-dimensional quotients in periodic Temperley-Lieb algebras, focusing on integrability in condensed matter physics and quantum field theory.
Explore integrability in condensed matter physics and quantum field theory through light-cone leading-logs of higher-point correlators using the Stampedes method.
Explore nonthermal electronic orders in photo-doped Mott systems with P. Werner from the University of Fribourg.
Explore the Agebc Bethe ansatz for open XXZ spin chains, focusing on non-diagonal boundary terms and Uqsl2 symmetry in condensed matter physics.
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