activity
20242026
collaborators

29 papers

cond-mat.mes-hall2026

Perspectives on inverse design for AI magnonics

Franz Vilsmeier, Florian Bruckner, Claas Abert +2

Inverse design - specifying a desired functionality and letting a computational algorithm find the optimal structure - has emerged as a powerful paradigm for magnonic device engine…

cond-mat.other2026

Brillouin Light Scattering Spectroscopy of Propagating Magnons at Sub-Kelvin Temperatures

David Schmoll, Nikolai Kuznetsov, Phillip Rehberger +8

Coupling light to magnetic excitations in the form of spin waves underpins both the optical study of magnetism and emerging schemes for quantum transduction, positioning the quanta…

cond-mat.mtrl-sci2026

Integrated magnonic neural circuits based on nonlinear wave neurons

Mengying Guo, Xudong Jing, Kristýna Davidkova +11

Artificial intelligence is driving intense interest in alternative computing hardware capable of neural information processing beyond conventional charge-based electronics. Among e…

cond-mat.mes-hall2026

Ultrafast formation of a large dynamic magnetic soliton

Ondřej Wojewoda, Sina Mayr, Miela J. Gross +17

Nonlinear magnetization dynamics offers a rich variety of phenomena ranging from bistability to chaos. Here, we report the ultrafast formation of a dynamic magnetic soliton in thin…

cond-mat.other2026

Bulk-mediated reflection of chirality-protected surface spin waves

Vitaliy I. Vasyuchka, Florin Ciubotaru, Andrii V. Chumak +2

Surface spin waves of the Damon-Eshbach type exhibit intrinsically nonreciprocal transport properties with a chiral dynamical field structure that localizes counterpropagating wave…

cond-mat.other2026

The advancement of Brillouin Light Scattering with the assistance of nanoplasmonic structures. Enhancement and amplification

E. Bortchagovsky, A. V. Chumak, V. Lozovski

Brillouin light scattering (BLS) is a key technique in studying magnonic systems, but its sensitivity is often limited. While nanoplasmonic systems can enhance BLS through near-fie…