Publications

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    2026

  1. Resonant excitations via low frequency pumping in driven magnon systems
    Jan Mathis Giesen, Alexandre Abbass Hamadeh, Imke Schneider, Philipp Pirro, Sebastian Eggert
    arXiv.2607.18073


  2. Spin-wave phase modulation using magnetic domain walls in dipolarly coupled structures for non-volatile magnonic computation
    H. Mortada, P. Pirro, A. Hamadeh
    Appl. Phys. Lett. 128, 232401 (2026)
    arXiv.2606.03336


  3. 2025

  4. Deeply Nonlinear Magnonic Directional Coupler
    Xu Ge, Roman Verba, Philipp Pirro, Andrii V Chumak, Qi Wang
    Nano Letters 25, 13490–13495 (2025)
    arXiv.2505.13829


  5. Design rules for low-insertion-loss magnonic transducers
    R. Erdélyi, G. Csaba, L. Maucha, F. Kohl, B. Heinz, J. Greil, M. Becherer, P. Pirro, A. Papp
    Scientific Reports 15, 9806 (2025)
    arXiv.2410.14370


  6. 2024

  7. Collective Spin-Wave Dynamics in Gyroid Ferromagnetic Nanostructures
    M. Gołębiewski, R. Hertel, M. d’Aquino, V. Vasyuchka, M. Weiler, P. Pirro, M. Krawczyk, S. Fukami, H. Ohno, J. Llandro
    ACS Appl. Mater. Interfaces 16, 22177–22188 (2024)
    arXiv.2305.06319


  8. Nanoscaled magnon transistor based on stimulated three-magnon splitting
    X. Ge, R. Verba, P. Pirro, A. V. Chumak, Q. Wang
    Appl. Phys. Lett. 124, 122413 (2024)
    arXiv.2311.18479


  9. Anisotropy-assisted magnon condensation in ferromagnetic thin films
    Therese Frostad, Philipp Pirro, Alexander A Serga, Burkard Hillebrands, Arne Brataas, Alireza Qaiumzadeh
    Physical Review Research 6, L012011 (2024)


  10. 2023

  11. Amplification and frequency conversion of spin waves using acoustic waves
    Morteza Mohseni, Abbass Hamadeh, Moritz Geilen, Philipp Pirro
    IEEE Transactions on Nanotechnology 22, 806 (2023)
    arXiv.2302.10614


  12. Resonant excitation of vortex gyrotropic mode via surface acoustic waves
    A. Koujok, A. Riveros, D. R. Rodrigues, G. Finocchio, M. Weiler, A. Hamadeh, P. Pirro
    Appl. Phys. Lett. 123, 132403 (2023)
    arXiv.2309.04987


  13. Symmetry and Nonlinearity of Spin Wave Resonance Excited by Focused Surface Acoustic Waves
    P. J. Shah, D. A. Bas, A. Hamadeh, M. Wolf, A. Franson, M. Newburger, P. Pirro, M. Weiler, M. R. Page
    Adv. Electron. Mater. 2023, 2300524 (2023)
    arXiv.2305.06259


  14. 2022

  15. Hybrid magnonic-oscillator system
    A. Hamadeh, D. Breitbach, M. Ender, A. Koujok, M. Mohseni, F. Kohl, J. Maskill, M. Bechberger, and P. Pirro
    Journal of Applied Physics 132, 183904 (2022)


  16. 2021

  17. Inverse-design magnonic devices
    Q. Wang, A. V. Chumak, P. Pirro
    Nat. Commun. 12, 2636 (2021)
    arXiv.2012.04544


  18. Stimulated-Raman-adiabatic-passage mechanism in a magnonic environment
    Q. Wang, T. Brächer, M. Fleischhauer, B. Hillebrands, P. Pirro
    Appl. Phys. Lett. 118, 182404 (2021)
    arXiv.2106.12318


  19. 2020

  20. A nonlinear magnonic nano-ring resonator
    Q. Wang, A. Hamadeh, R. Verba, V. Lomakin, M. Mohseni, B. Hillebrands, A. V. Chumak, and P. Pirro
    npj computational materials 6, 192 (2020)
    arXiv:2007.09205