activity
20242026
collaborators

7 papers

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-sci2025

Ultra-long-living magnons in the quantum limit

Rostyslav O. Serha, Kaitlin H. McAllister, Fabian Majcen +8

Solid-state platforms based on bosonic quasiparticles offer a compelling route toward on-chip quantum information technologies scalable to nanometer dimensions. Coherence time, a k…

cond-mat.mes-hall2025

k-Selective Electrical-to-Magnon Transduction with Realistic Field-distributed Nanoantennas

Andreas Höfinger, Andrey A. Voronov, David Schmoll +9

The excitation and detection of propagating spin waves with lithographed nanoantennas underpin both classical magnonic circuits and emerging quantum technologies. Here, we establis…

cond-mat.mes-hall2025

Long-range propagating paramagnon-polaritons in organic free radicals

Sebastian Knauer, Roman Verba, Rostyslav O. Serha +5

Materials are commonly distinguished by their magnetic response into diamagnetic, paramagnetic, and magnetically ordered (ferro-, ferri-, and antiferromagnetic) phases. Diamagnets…

physics.app-ph2024

YIG/CoFeB bilayer magnonic diode

Noura Zenbaa, Khrystyna O. Levchenko, Jaganandha Panda +9

We demonstrate a magnonic diode based on a bilayer structure of Yttrium Iron Garnet (YIG) and Cobalt Iron Boron (CoFeB). The bilayer exhibits pronounced non-reciprocal spin-wave pr…

cond-mat.mes-hall2024

Damping Enhancement in YIG at Millikelvin Temperatures due to GGG Substrate

Rostyslav O. Serha, Andrey A. Voronov, David Schmoll +12

Quantum magnonics aims to exploit the quantum mechanical properties of magnons for nanoscale quantum information technologies. Ferrimagnetic yttrium iron garnet (YIG), which offers…