معرفی
Nikolai Kiselev is a researcher at the Peter Grünberg Institute (PGI-1) at Forschungszentrum Jülich, specializing in quantum theory of materials with a focus on magnetic phenomena. His work bridges condensed matter physics and applied research in spintronics, topological materials, and nanomagnetism. He collaborates closely with experimental groups and leverages high-performance computing resources at Jülich Supercomputing Centre.
Research interests include magnetic skyrmions, chiral bobbers, hopfions, and other topological spin textures. He explores their stability, dynamics, and potential applications in next-generation memory technologies. Recent work investigates magnetic domain wall control in multilayers and skyrmion lattice behavior under external fields.
Notably intersects physics with interdisciplinary studies: Kiselev co-authored studies on physical activity programs for individuals with mental health disorders and intellectual disabilities. His work addresses accessibility barriers in sports for marginalized groups in Switzerland and evaluates public health guidelines for inclusive participation. He also examines mental health challenges among refugees and elite para-athletes.
Publications span theoretical physics journals (Physical Review Letters, Nature Materials) and health science venues (Journal of Public Health, Disability and Health Journal). Leads the Topological Nanoelectronics Group and collaborates with industry on friction and material design for practical applications.
Advances in magnetic materials research include discovering novel topological states like skyrmion bundles and tailing skyrmions. His simulation framework 'spirit' is widely used for atomistic spin dynamics modeling. Current projects explore 3D mapping of skyrmion textures and thermal generation of droplet solitons.



