Magnetically doped Si and Ge nanowires have potential application in future nanowire spin-based devices. Here, we report a supercritical fluid method for producing single crystalline Mn-doped Ge nanowires with a Mn-doping concentration of between 0.5−1.0 atomic % that display ferromagnetism above 300 K and a superior performance with respect to the hole mobility of around 340 cm2/Vs, demonstrating the potential of using these nanowires as building blocks for electronic devices
This thesis presents a study of the Vapour-Liquid-Solid (VLS) synthesis of silicon and germanium nan...
The growth of magnetic semiconductors with Curie temperature above room temperature is one of the ma...
International audienceWe report experimental evidence for a spontaneous shape transition, from regul...
Magnetically doped Si and Ge nanowires have potential application in future nanowire spin-based devi...
A method for synthesizing Ge1–xMnx/a-Si core–shell nanowires (x = 0.3(1)–1.0(2)) using a supercritic...
Self-assembled semiconducting nanowires (NW) are promising candidates to design and to fabricate new...
scale down in the feature size. However, power dissipation per unit area and variability are among t...
We report a 'superlattice' growth method to produce well-aligned magnetic MnGe nanocolumns and nanow...
Possible origins of room-temperature ferromagnetism in GeMn nanowires (NWs) are investigated. Arrays...
Magnetic semiconductors have attracted extensive attention due to their novel physical properties as...
In this Letter, we report the electrical spin injection and detection in Ge nanowire transistors wit...
Mn doping of group-IV semiconductors (Si/Ge) is achieved by embedding nanostructured Mn-layers in gr...
Mn doping of group-IV semiconductors (Si/Ge) is achieved by embedding nanostructured Mn-la...
We describe the fabrication of Ge nanowires during a single co-deposition step of Ge and Mn at high ...
International audienceThe emerging field of spintronics would be dramatically boosted if room-temper...
This thesis presents a study of the Vapour-Liquid-Solid (VLS) synthesis of silicon and germanium nan...
The growth of magnetic semiconductors with Curie temperature above room temperature is one of the ma...
International audienceWe report experimental evidence for a spontaneous shape transition, from regul...
Magnetically doped Si and Ge nanowires have potential application in future nanowire spin-based devi...
A method for synthesizing Ge1–xMnx/a-Si core–shell nanowires (x = 0.3(1)–1.0(2)) using a supercritic...
Self-assembled semiconducting nanowires (NW) are promising candidates to design and to fabricate new...
scale down in the feature size. However, power dissipation per unit area and variability are among t...
We report a 'superlattice' growth method to produce well-aligned magnetic MnGe nanocolumns and nanow...
Possible origins of room-temperature ferromagnetism in GeMn nanowires (NWs) are investigated. Arrays...
Magnetic semiconductors have attracted extensive attention due to their novel physical properties as...
In this Letter, we report the electrical spin injection and detection in Ge nanowire transistors wit...
Mn doping of group-IV semiconductors (Si/Ge) is achieved by embedding nanostructured Mn-layers in gr...
Mn doping of group-IV semiconductors (Si/Ge) is achieved by embedding nanostructured Mn-la...
We describe the fabrication of Ge nanowires during a single co-deposition step of Ge and Mn at high ...
International audienceThe emerging field of spintronics would be dramatically boosted if room-temper...
This thesis presents a study of the Vapour-Liquid-Solid (VLS) synthesis of silicon and germanium nan...
The growth of magnetic semiconductors with Curie temperature above room temperature is one of the ma...
International audienceWe report experimental evidence for a spontaneous shape transition, from regul...