Konstantin Zarembo serves as a Professor within the Theoretical high energy, astroparticle and gravitational physics group at the Niels Bohr Institute, University of Copenhagen, focusing on fundamental theoretical physics research. His research program centers on String Theory and Quantum Field Theory , with particular emphasis on integrable structures in supersymmetric gauge theories. Key contributions include groundbreaking work on AdS/CFT correspondence, where he explores exact solutions through Bethe ansatz techniques, domain walls in ABJM theory, and boundary states in holographic dualities. His methodology combines advanced mathematical physics with quantum integrability to address non-perturbative phenomena in high-energy systems. Analysis of his 2021-2025 publications reveals a cohesive research trajectory centered on integrability applications across quantum field theory and string theory, with significant focus on 't Hooft loops, Gross-Neveu models, and eigenvalue systems. These works consistently appear in premier journals like Journal of High Energy Physics and Physical Review Letters, demonstrating sustained impact in theoretical physics. No scientific awards were documented in the source materials. Information regarding student supervision, grant funding, or collaborative projects beyond co-authorship was not provided in the available texts. Professor Zarembo operates within the Theoretical high energy, astroparticle and gravitational physics research group at the Niels Bohr Institute, contributing to Copenhagen's prominence in fundamental theoretical physics through his specialized expertise in integrable systems and holographic dualities.








