Article cité par

La fonctionnalité Article cité par… liste les citations d'un article. Ces citations proviennent de la base de données des articles de EDP Sciences, ainsi que des bases de données d'autres éditeurs participant au programme CrossRef Cited-by Linking Program. Vous pouvez définir une alerte courriel pour être prévenu de la parution d'un nouvel article citant " cet article (voir sur la page du résumé de l'article le menu à droite).

Article cité :

Transport, magnetic, and magnetotransport properties of Ba3−xRxTa5O15(R=rareearth)

Haruki Takei, Satomi Ito, Kenta Iwamoto, Yumiko Katayama, Kazunori Ueno, Hideki Kuwahara and Takuro Katsufuji
Physical Review Materials 8 (5) (2024)
https://doi.org/10.1103/PhysRevMaterials.8.054405

Large Negative Magnetoresistance in Ba3−xEuxNb5O15

Kenta Iwamoto, Wataru Sekino, Satomi Ito, et al.
Journal of the Physical Society of Japan 91 (3) (2022)
https://doi.org/10.7566/JPSJ.91.033702

Fabrication of chemically and structurally abrupt Eu1−xLaxO/SrO/Si interfaces and their analysis by STEM-EELS

R. Held, J. A. Mundy, M. E. Holtz, et al.
Physical Review Materials 5 (12) (2021)
https://doi.org/10.1103/PhysRevMaterials.5.124419

Exploring the intrinsic limit of the charge-carrier-induced increase of the Curie temperature of Lu- and La-doped EuO thin films

R. Held, T. Mairoser, A. Melville, et al.
Physical Review Materials 4 (10) (2020)
https://doi.org/10.1103/PhysRevMaterials.4.104412

Growth and characterization of Sc-doped EuO thin films

S. G. Altendorf, A. Reisner, C. F. Chang, et al.
Applied Physics Letters 104 (5) (2014)
https://doi.org/10.1063/1.4863752

Increasing Magnetoresistance Using Magnetic‐Field‐Tunable Interfaces

Andreas Schmehl, Darrell G. Schlom and Jochen Mannhart
Advanced Materials 23 (10) 1242 (2011)
https://doi.org/10.1002/adma.201003999

Influence of the substrate temperature on the Curie temperature and charge carrier density of epitaxial Gd-doped EuO films

T. Mairoser, A. Schmehl, A. Melville, et al.
Applied Physics Letters 98 (10) (2011)
https://doi.org/10.1063/1.3563708

La-doped EuO: A rare earth ferromagnetic semiconductor with the highest Curie temperature

H. Miyazaki, H. J. Im, K. Terashima, et al.
Applied Physics Letters 96 (23) (2010)
https://doi.org/10.1063/1.3416911

Experimental and theoretical analysis of magnetic moment enhancement in oxygen-deficient EuO

M. Barbagallo, N. D. M. Hine, J. F. K. Cooper, et al.
Physical Review B 81 (23) (2010)
https://doi.org/10.1103/PhysRevB.81.235216

Epitaxial integration of the highly spin-polarized ferromagnetic semiconductor EuO with silicon and GaN

Andreas Schmehl, Venu Vaithyanathan, Alexander Herrnberger, et al.
Nature Materials 6 (11) 882 (2007)
https://doi.org/10.1038/nmat2012

Preparation of Gd-doped EuO1 xthin films and the magnetic and magneto-transport properties

Tetsuro Matsumoto, Katsuhiko Yamaguchi, Masatada Yuri, et al.
Journal of Physics: Condensed Matter 16 (34) 6017 (2004)
https://doi.org/10.1088/0953-8984/16/34/003

Binary Lanthanide Oxides

W. Suski and T. Palewski
Landolt-Börnstein - Group III Condensed Matter, Binary Lanthanide Oxides 27C1 1 (1997)
https://doi.org/10.1007/10019726_1

Binary Lanthanide Oxides

W. Suski and T. Palewski
Landolt-Börnstein - Group III Condensed Matter, Binary Lanthanide Oxides 27C1 121 (1997)
https://doi.org/10.1007/10019726_12

Binary Lanthanide Oxides

W. Suski and T. Palewski
Landolt-Börnstein - Group III Condensed Matter, Binary Lanthanide Oxides 27C1 84 (1997)
https://doi.org/10.1007/10019726_9

Binary Lanthanide Oxides

W. Suski and T. Palewski
Landolt-Börnstein - Group III Condensed Matter, Binary Lanthanide Oxides 27C1 10 (1997)
https://doi.org/10.1007/10019726_3