Gadolinium thin films as benchmark for magneto-caloric thin films

Helmich L, Bartke M, Teichert N, Schleicher B, Faehler S, Hütten A (2017)
AIP ADVANCES 7(5): 056429.

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Zeitschriftenaufsatz | Veröffentlicht | Englisch
Autor
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Abstract / Bemerkung
We report on the preparation of Gadolinium thin films by means of sputter deposition on Silicon Oxide wafers. A series of samples with different buffer layers and various substrate temperatures has been produced. The film on an amorphous Tantalum buffer deposited at 773 K shows the highest increase of magnetization during the phase transition at the Curie temperature. Further detailed analysis of the magnetic properties has been conducted by VSM. (C) 2017 Author(s).
Erscheinungsjahr
Zeitschriftentitel
AIP ADVANCES
Band
7
Zeitschriftennummer
5
Artikelnummer
056429
Konferenz
61st Annual Conference on Magnetism and Magnetic Materials (MMM)
Konferenzort
New Orleans, LA
ISSN
PUB-ID

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Helmich L, Bartke M, Teichert N, Schleicher B, Faehler S, Hütten A. Gadolinium thin films as benchmark for magneto-caloric thin films. AIP ADVANCES. 2017;7(5): 056429.
Helmich, L., Bartke, M., Teichert, N., Schleicher, B., Faehler, S., & Hütten, A. (2017). Gadolinium thin films as benchmark for magneto-caloric thin films. AIP ADVANCES, 7(5), 056429. doi:10.1063/1.4977880
Helmich, L., Bartke, M., Teichert, N., Schleicher, B., Faehler, S., and Hütten, A. (2017). Gadolinium thin films as benchmark for magneto-caloric thin films. AIP ADVANCES 7:056429.
Helmich, L., et al., 2017. Gadolinium thin films as benchmark for magneto-caloric thin films. AIP ADVANCES, 7(5): 056429.
L. Helmich, et al., “Gadolinium thin films as benchmark for magneto-caloric thin films”, AIP ADVANCES, vol. 7, 2017, : 056429.
Helmich, L., Bartke, M., Teichert, N., Schleicher, B., Faehler, S., Hütten, A.: Gadolinium thin films as benchmark for magneto-caloric thin films. AIP ADVANCES. 7, : 056429 (2017).
Helmich, Lars, Bartke, Marianne, Teichert, Niclas, Schleicher, Benjamin, Faehler, Sebastian, and Hütten, Andreas. “Gadolinium thin films as benchmark for magneto-caloric thin films”. AIP ADVANCES 7.5 (2017): 056429.