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Abstract
Phase-separated semiconductors containing magnetic nanostructures are relevant systems for the realization of high-density recording media. Here, the controlled strain engineering of GaδFeN layers with FeyN embedded nanocrystals (NCs) via AlxGa1−xN buffers with different Al concentration 0<xAl<41% is presented. Through the addition of Al to the buffer, the formation of predominantly prolate-shaped ε-Fe3N NCs takes place. Already at an Al concentration xAl≈ 5% the structural properties—phase, shape, orientation—as well as the spatial distribution of the embedded NCs are modified in comparison to those grown on a GaN buffer. Although the magnetic easy axis of the cubic γ’-GayFe4−yN nanocrystals in the layer on the xAl=0% buffer lies in-plane, the easy axis of the ε-Fe3N NCs in all samples with AlxGa1−xN buffers coincides with the [0001] growth direction, leading to a sizeable out-of-plane magnetic anisotropy and opening wide perspectives for perpendicular recording based on nitride-based magnetic nanocrystals.
| Originalsprache | Englisch |
|---|---|
| Aufsatznummer | 3294 |
| Seiten (von - bis) | 3294/1-19 |
| Seitenumfang | 19 |
| Fachzeitschrift | Materials |
| Volume | 13 |
| Ausgabenummer | 15 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 24 Juli 2020 |
Wissenschaftszweige
- 210006 Nanotechnologie
- 103 Physik, Astronomie
- 103011 Halbleiterphysik
- 103018 Materialphysik
- 202032 Photovoltaik
- 103009 Festkörperphysik
- 103017 Magnetismus
JKU-Schwerpunkte
- Sustainable Development: Responsible Technologies and Management
Projekte
- 1 Abgeschlossen
-
Christian Doppler Labor für Nanoskalige Phasenumwandlungen
Groiß, H. (Projektleiter*in)
01.01.2019 → 31.12.2025
Projekt: Geförderte Forschung › CDG - Christian Doppler Forschungsgesellschaft
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