High-Curie-temperature ferromagnetism in self-organized Ge1−xMnx nanocolumns

被引:0
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作者
Matthieu Jamet
André Barski
Thibaut Devillers
Valier Poydenot
Romain Dujardin
Pascale Bayle-Guillemaud
Johan Rothman
Edith Bellet-Amalric
Alain Marty
Joël Cibert
Richard Mattana
Serge Tatarenko
机构
[1] Service de Physique des Matériaux et Microstructures,Département de Recherche Fondamentale sur la Matière Condensée
[2] Laboratoire d'Electronique de Technologie de l'Information,undefined
[3] Laboratoire Infrarouge,undefined
[4] Laboratoire Louis Néel,undefined
[5] Laboratoire de Spectrométrie Physique,undefined
[6] Unité Mixte de Physique CNRS-Thalès,undefined
[7] Université Paris-Sud,undefined
来源
Nature Materials | 2006年 / 5卷
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摘要
The emerging field of spintronics would be dramatically boosted if room-temperature ferromagnetism could be added to semiconductor nanostructures that are compatible with silicon technology. Here, we report a high-TC (>400K) ferromagnetic phase of (Ge,Mn) epitaxial layer. The manganese content is 6%, and careful structural and chemical analyses show that the Mn distribution is strongly inhomogeneous: we observe eutectoid growth of well-defined Mn-rich nanocolumns surrounded by a Mn-poor matrix. The average diameter of these nanocolumns is 3nm and their spacing is 10nm. Their composition is close to Ge2Mn, which corresponds to an unknown germanium-rich phase, and they have a uniaxially elongated diamond structure. Their Curie temperature is higher than 400K. Magnetotransport reveals a pronounced anomalous Hall effect up to room temperature. A giant positive magnetoresistance is measured from 7,000% at 30K to 200% at 300K and 9T, with no evidence of saturation.
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页码:653 / 659
页数:6
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