Regular biography
Jørgen Rasmussen is a physicist with a strong focus on theoretical physics, particularly in the areas of conformal field theory (CFT), logarithmic conformal field theory (LCFT), and their applications to string theory, black holes, and integrable systems. His research spans a wide range of topics, including the structure of fusion algebras, modular invariance, and the correspondence between black holes and conformal field theories (e.g., the Kerr/CFT correspondence). He has also contributed to the study of critical phenomena in statistical mechanics, such as percolation and dense polymers, using exactly solvable models. Rasmussen has published extensively in top-tier journals such as *Journal of Physics A*, *Nuclear Physics B*, *Modern Physics Letters A*, and *International Journal of Modern Physics A*. His work often bridges mathematical physics and theoretical physics, with a particular emphasis on symmetry, algebraic structures, and their implications for quantum field theories and gravitational systems.
Scholar-generated biography
Jorgen Rasmussen is a researcher in Mathematical Physics with a focus on Conformal Field Theory, Representation Theory, and Integrable Systems. His work explores logarithmic minimal models, critical dense polymers, and the structure of conformal blocks in SL(2) current algebra. He investigates fusion algebras, boundary conditions, and free field realizations in 2D current algebras. His research also includes the study of integrable boundary conditions and their extensions in logarithmic minimal models, as well as the Hamiltonian reduction of SL(2) theories. Rasmussen's contributions span the intersection of algebraic structures and quantum field theory, with applications in critical phenomena and the Kerr/CFT correspondence.