We report on the conditions necessary for the electrical injection of spin-polarized electrons into indium nitride nanowires synthesized from the bottom up by molecular beam epitaxy. The presented results mark the first unequivocal evidence of spin injection into III-V semiconductor nanowires. Utilizing a newly developed preparation scheme, we are able to surmount shadowing effects during the metal deposition. Thus, we avoid strong local anisotropies that arise if the ferromagnetic leads are wrapping around the nanowire. Using a combination of various complementary techniques, inter alia the local Hall effect, we carried out a comprehensive investigation of the coercive fields and switching behaviors of the cobalt micromagnetic spin probes....
We examined electrical spin transport in cylindrical silicon nanowires (Si NWs) using the lateral no...
The new paradigm of electronics, 'spintronics', promises to extend the functionality of information ...
Recently, undoped semiconductors have been pushed to the frontiers of diluted magnetic semiconductor...
Due to their strong spin-orbit coupling III-V semiconductor nanowires are excellent candidates for e...
The interest in spin transport in nanoscopic semiconductor channels is driven by both the inevitable...
The electrical injection of spin-polarized electrons in a semiconductor can be achieved in principle...
Semiconductor materials form the basis of modern electronics, communication, data storage and comput...
In this thesis we investigate spin injection and transport in semiconductor and metal nanostructures...
Spintronic devices, which aim to utilize the quantum mechanical spin properties of electrons, offer ...
The electrical injection of spin polarized electrons in a semiconductor can be achieved in principle...
The research in this thesis is motivated by an interest in quantum physics and by the prospect of ne...
The continuous scaling of Si transistor feature size has driven the advancement of semiconductor tec...
III-Nitride based materials have gained prominence for various applications, especially in the field...
We report a novel mechanism for the electrical injection and detection of out-of-plane spin accumula...
Todays conventional electronic devices are based on electron charge transport in semiconductor chann...
We examined electrical spin transport in cylindrical silicon nanowires (Si NWs) using the lateral no...
The new paradigm of electronics, 'spintronics', promises to extend the functionality of information ...
Recently, undoped semiconductors have been pushed to the frontiers of diluted magnetic semiconductor...
Due to their strong spin-orbit coupling III-V semiconductor nanowires are excellent candidates for e...
The interest in spin transport in nanoscopic semiconductor channels is driven by both the inevitable...
The electrical injection of spin-polarized electrons in a semiconductor can be achieved in principle...
Semiconductor materials form the basis of modern electronics, communication, data storage and comput...
In this thesis we investigate spin injection and transport in semiconductor and metal nanostructures...
Spintronic devices, which aim to utilize the quantum mechanical spin properties of electrons, offer ...
The electrical injection of spin polarized electrons in a semiconductor can be achieved in principle...
The research in this thesis is motivated by an interest in quantum physics and by the prospect of ne...
The continuous scaling of Si transistor feature size has driven the advancement of semiconductor tec...
III-Nitride based materials have gained prominence for various applications, especially in the field...
We report a novel mechanism for the electrical injection and detection of out-of-plane spin accumula...
Todays conventional electronic devices are based on electron charge transport in semiconductor chann...
We examined electrical spin transport in cylindrical silicon nanowires (Si NWs) using the lateral no...
The new paradigm of electronics, 'spintronics', promises to extend the functionality of information ...
Recently, undoped semiconductors have been pushed to the frontiers of diluted magnetic semiconductor...