activity
20242026
collaborators

5 papers

physics.app-ph2026

Microscaled Tunable Magnonic RF Phase Shifters

Johannes Greil, Antonio Angotti, Felix Kohl +11

Tunable, microscopic, and energy-efficient solutions for radio-frequency (RF) signal manipulation in the GHz regime are a key technology for efficient communication and sensing app…

physics.app-ph2025

Modelling spin-wave interference with electromagnetic leakage in micron-scaled spin-wave transducers

Felix Kohl, Björn Heinz, Matthias Wagner +3

Utilization of spin-wave transducers for radio-frequency signal processing provides significant potential due to intrinsic tunability, scalability and nonlinearity. However, such c…

physics.app-ph2025

Identification and minimization of losses in microscaled spin-wave transducers

Felix Kohl, Björn Heinz, Ádám Papp +3

Magnonics is a promising platform for integrated radio frequency (rf) devices, leveraging its inherent non-reciprocity and reconfigurability. However, the efficiency of spin-wave t…

physics.app-ph2024

Design rules for low-insertion-loss magnonic transducers

Róbert Erdélyi, György Csaba, Levente Maucha +6

We present a computational framework for the design of magnonic transducers, where waveguide antennas generate and pick up spin-wave signals. Our method relies on the combination o…

physics.app-ph2024

Tuning magnonic devices with on-chip permanent micromagnets

Maria Cocconcelli, Silvia Tacchi, Róbert Erdélyi +13

One of the most appealing features of magnonics is the easy tunability of spin-waves propagation via external magnetic fields. Usually this requires bulky and power-hungry electrom…