Dynamic magnonic crystals based on vanadium dioxide gratings
Nikitin, Aleksei A.; Komlev, Andrey E.; Nikitin, Andrey A.; Ustinov, Alexey B.; Lähderanta, Erkki (2023-10-10)
Post-print / Final draft
Nikitin, Aleksei A.
Komlev, Andrey E.
Nikitin, Andrey A.
Ustinov, Alexey B.
Lähderanta, Erkki
10.10.2023
Physical Review Applied
20
4
American Physical Society
School of Engineering Science
Kaikki oikeudet pidätetään.
© 2023 American Physical Society
© 2023 American Physical Society
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe20231012139820
https://urn.fi/URN:NBN:fi-fe20231012139820
Tiivistelmä
The properties of spin-wave quanta, referred to as magnons, make them a promising signal carrier for the transmission and processing of information in magnetic materials. In this field, called magnonics, dynamic magnonic crystals attract special attention for applications such as complex real-time spectral transformations, due to on-demand controllability of transmission gaps. Here, we report on the experimental realization of the dynamic control of spin-wave band structures in artificial crystals using the metal-insulator transition in the vanadium dioxide (VO2) grating. The obtained results are confirmed by a theoretical approach predicting a dramatic variation of the reflection coefficient from the VO2 stripes upon the phase transition. The proposed structure combines the excellent versatility, fast switching speed, low power consumption, and external control it affords.
Lähdeviite
Nikitin, A.A., Komlev, A.E., Nikitin, A.A., Ustinov, A.B., Lähderanta, E. (2023). Dynamic magnonic crystals based on vanadium dioxide gratings. Physical Review Applied, vol. 20, iss. 4. DOI: 10.1103/PhysRevApplied.20.044026
Alkuperäinen verkko-osoite
https://journals.aps.org/prapplied/abstract/10.1103/PhysRevApplied.20.044026Kokoelmat
- Tieteelliset julkaisut [1841]
