collaborators

5 papers

physics.app-ph2026

Design and Realization of Broadband Magnonic Spectrometers With Local Electrical Outputs

Johannes Greil, Maximilian Hofschen, Felix Naunheimer +3

Microscopic radio-frequency (RF) devices based on propagating spin waves (SWs) are promising for compact, energy-efficient RF signal processing, but their implementation is impeded…

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…

cond-mat.other2026

Characterizing the Linearity of Magnonic Devices for Radio-Frequency Applications

Robert Erdelyi, Adam Papp Levente Maucha, Philipp Pirro +5

Magnonic devices exhibit strong amplitude-dependent nonlinearities, which are detrimental to signal integrity in radio-frequency (RF) signal processing applications. They also limi…

physics.app-ph2026

Establishing the Magnetoelastic Origin of Spin-Wave Routing through Focused Ion Beam Patterning

Felix Naunheimer, Johannes Greil, Valentin Ahrens +6

Spin waves are promising information carriers for analog and wave-based computing, where functionality relies on compact and precisely engineered scattering landscapes. Focused ion…

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…