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Exploring dynamical control of electronic interactions in quantum materials through optical techniques, focusing on engineering interactions, modifying Hubbard U, and entanglement spectroscopy in driven systems.
Explore non-equilibrium many-body physics, focusing on universal aspects and novel phases of matter beyond equilibrium paradigms. Discover connections between statistical physics, AMO, condensed matter, and high-energy physics.
Explore universal dynamics and non-thermal fixed points in many-body physics, covering topics like random defect models, deformation solutions, and scaling analysis in isolated systems and condensates.
Exploring non-equilibrium dynamics in dipole- and higher-moment conserving systems, focusing on universal behaviors, fractal excitations, and novel phases of matter far from equilibrium.
Explore quantum simulators and non-equilibrium many-body physics in optical lattices using sound. Discover novel phases of matter, universality classes, and connections between diverse fields of physics.
Explores measurement-induced entanglement transitions in quantum circuits, focusing on characterization methods, dynamical symmetry, and connections to classical models. Discusses implications for non-equilibrium many-body physics.
Explores topological pumping in strongly correlated quantum systems, focusing on experimental results with dysprosium atoms in optical lattices and their implications for prethermal states and quantum scars.
Explores the relationship between neutral hydrogen gas in galaxies and the cosmic web, discussing observations, data sources, and implications for galaxy formation and evolution.
Explore galaxy disc formation, evolution, and structure through simulations and observations, examining factors like cosmic web influence, mergers, and stellar populations.
Explore how cosmic filaments influence disc galaxy formation, examining the interplay between the cosmic web and galaxy evolution across time and its implications for cosmology.
Explore cold streams in hot CGM of high-redshift galaxies, their properties, and implications for galaxy formation. Gain insights into cosmic web evolution and its impact on early universe structures.
Explore halo orbits and mass evolution around cosmic filaments, examining their dynamics, virialization, and impact on galaxy formation across cosmic time.
Explores the Energy Minimisation Principle in cosmology, linking protohalo shapes to anisotropic infall and discussing its implications for galaxy formation, cosmic web evolution, and large-scale structure.
Explore celestial holography, soft symmetries, and particle-like backgrounds in quantum field theory. Gain insights into celestial shockwave correlators and the celestial distance conjecture.
Explore holographic CFTs and strongly coupled AdS matter, focusing on recent developments in conformal field theory and their implications for quantum gravity and holography.
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