Magnetic properties of square Py nanowires: Irradiation dose and geometry dependence
A. Ehrmann, T. Blachowicz, S. Komraus, M.-. Nees, P.-. Jakobs, H. Leiste, M. Mathes, M. Schaarschmidt, Journal of Applied Physics 117 (2015).
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Artikel
Autor*in
Ehrmann, A. ;
Blachowicz, T.;
Komraus, S.;
Nees, M. -.;
Jakobs, P. -.;
Leiste, H.;
Mathes, M.;
Schaarschmidt, M.
Erscheinungsjahr
Zeitschriftentitel
Journal of Applied Physics
Band
117
Zeitschriftennummer
17
FH-PUB-ID
Zitieren
Ehrmann, Andrea ; Blachowicz, T. ; Komraus, S. ; Nees, M. -. ; Jakobs, P. -. ; Leiste, H. ; Mathes, M. ; Schaarschmidt, M.: Magnetic properties of square Py nanowires: Irradiation dose and geometry dependence. In: Journal of Applied Physics Bd. 117 (2015), Nr. 17
Ehrmann A, Blachowicz T, Komraus S, et al. Magnetic properties of square Py nanowires: Irradiation dose and geometry dependence. Journal of Applied Physics. 2015;117(17).
Ehrmann, A., Blachowicz, T., Komraus, S., Nees, M.-., Jakobs, P.-., Leiste, H., … Schaarschmidt, M. (2015). Magnetic properties of square Py nanowires: Irradiation dose and geometry dependence. Journal of Applied Physics, 117(17).
@article{Ehrmann_Blachowicz_Komraus_Nees_Jakobs_Leiste_Mathes_Schaarschmidt_2015, title={Magnetic properties of square Py nanowires: Irradiation dose and geometry dependence}, volume={117}, number={17}, journal={Journal of Applied Physics}, author={Ehrmann, Andrea and Blachowicz, T. and Komraus, S. and Nees, M. -. and Jakobs, P. -. and Leiste, H. and Mathes, M. and Schaarschmidt, M.}, year={2015} }
Ehrmann, Andrea, T. Blachowicz, S. Komraus, M. -. Nees, P. -. Jakobs, H. Leiste, M. Mathes, and M. Schaarschmidt. “Magnetic Properties of Square Py Nanowires: Irradiation Dose and Geometry Dependence.” Journal of Applied Physics 117, no. 17 (2015).
A. Ehrmann et al., “Magnetic properties of square Py nanowires: Irradiation dose and geometry dependence,” Journal of Applied Physics, vol. 117, no. 17, 2015.
Ehrmann, Andrea, et al. “Magnetic Properties of Square Py Nanowires: Irradiation Dose and Geometry Dependence.” Journal of Applied Physics, vol. 117, no. 17, 2015.