75.50.Pp Magnetic semiconductors
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- Doctoral Thesis (10)
Keywords
- Magnetischer Halbleiter (5)
- Galliumarsenid (4)
- Manganarsenide (4)
- Ferromagnetic Semiconductors (3)
- Magnetic Anisotropy (3)
- Magnetoelektronik (3)
- Ferromagnetische Halbleiter (2)
- GaMnAs (2)
- Halbleiter (2)
- Magnetotransport (2)
- Molecular Beam Epitaxy (2)
- Molekularstrahlepitaxie (2)
- Quantenwell (2)
- Semimagnetischer Halbleiter (2)
- Spin flip (2)
- Spintronics (2)
- Spintronik (2)
- ferromagnetic semiconductors (2)
- "(Ga (1)
- (Ga (1)
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- Drei-Fünf-Halbleiter (1)
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- Exziton (1)
- Ferromagnetikum (1)
- Ferromagnetische Schicht (1)
- Ferromagnetismus (1)
- Gallium Manganese Arsenide (1)
- Halbleiterdiode (1)
- Helimagnetism (1)
- Herstellung (1)
- Magnetic properties of thin films interfaces (1)
- Magnetische Anisotropie (1)
- Magnetische Anisotropien (1)
- Magnetische Halbleiter (1)
- Magneto-optische Eigenschaften (1)
- Magnetowiderstand (1)
- Mangan (1)
- Manganese Silicide (1)
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- Manganselenide (1)
- Mangansilicide (1)
- Mn)As (1)
- Mn)As" (1)
- Oberflächenpräparation (1)
- Optische Eigenschaft (1)
- Paramagnetic resonance (1)
- Photoelektronenspektroskopie (1)
- Photoemission spectroscopy (1)
- Quantentrog (1)
- Raman-Spektroskopie (1)
- Resonanz-Tunneldiode (1)
- Röntgenbeugung (1)
- Spinelectronic (1)
- Spinelektronik (1)
- Spinflip-Streuung (1)
- Strain (1)
- Tunneldioden (1)
- Zinkselenid (1)
- carrier-induced ferromagnetism (1)
- devices (1)
- diluted magnetic semiconductors (1)
- excitons (1)
- ferromagnetische Halbleiter (1)
- g-Faktor (1)
- magnetic anisotropy (1)
- magnetic semiconductors (1)
- magnetische Anisotropie (1)
- magneto-optical properties (1)
- magnetotransport (1)
- memory (1)
- multi-spin flip (1)
- quantum wells (1)
- resonant tunneling diode (1)
- resonante Tunneldioden (1)
- spin Injektion (1)
- spin injection (1)
- spinflip scattering (1)
- spintronics (1)
- spintronik (1)
- surface preparation (1)
- tunneling diodes (1)
- verdünnt magnetische Halbleiter (1)
Institute
The study of magnetic phases in spintronic materials is crucial to both our fundamental understanding of magnetic interactions and for finding new effects for future applications.
In this thesis, we study the basic electrical and magnetic transport properties of both epitaxially-grown MnSi thin films, a helimagnetic metal only starting to be developed within our group, and parabolic-doped ultra-thin (Ga,Mn)As layers for future studies and applications.