Gabriel Jacobsen
Role not yet determined Is this you? Add your title
Also affiliated: Universidade Federal de São Carlos (2025)
Formerly Arkansas Research Intern, University of Arkansas through 2022.
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Gabriel Jacobsen's research focuses on the optical and electronic properties of semiconductor materials, particularly those relevant to optoelectronic devices. His work has investigated the influence of doping and structural properties on the photocatalytic activity of zinc oxide (ZnO). Jacobsen has also explored the viability and characteristics of intermediate band solar cells utilizing indium arsenide (InAs) and gallium arsenide (GaAs) submonolayer quantum dots, examining aspects such as surface reconstruction and strain fields. His recent publications delve into the hydrodynamics and recombination dynamics of electron-hole fluids and plasmas within mesoscopic semiconductor channels. Further investigations include the spin-dependent analysis of exciton decoherence in magnetic fields and the impact of carrier localization on photoluminescence from quantum dot layers.
Metrics
- h-index: 1
- Publications: 3
- Citations: 1
Positions
-
Research Intern 2022University of Arkansas Fayetteville Institute for Nanoscience and Engineering Physics and Material Science ORCID
Selected Publications
-
Engineering Exciton g ‐Factors With Light in Type‐II Heterostructures (2026)
-
Low-Field Optical Polarization in Type-II Quantum Dots via Nuclear-Driven Dark State Mixing (2025)
-
Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells (2025)
-
Optical spin polarization by coherent magnetoabsorption generation (2025)
Collaboration Network
Top Collaborators
- Optical spin polarization by coherent magnetoabsorption generation
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Low-Field Optical Polarization in Type-II Quantum Dots via Nuclear-Driven Dark State Mixing
- Engineering Exciton g ‐Factors With Light in Type‐II Heterostructures
- Optical spin polarization by coherent magnetoabsorption generation
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Low-Field Optical Polarization in Type-II Quantum Dots via Nuclear-Driven Dark State Mixing
- Engineering Exciton g ‐Factors With Light in Type‐II Heterostructures
- Optical spin polarization by coherent magnetoabsorption generation
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Engineering Exciton g ‐Factors With Light in Type‐II Heterostructures
- Optical spin polarization by coherent magnetoabsorption generation
- Low-Field Optical Polarization in Type-II Quantum Dots via Nuclear-Driven Dark State Mixing
- Engineering Exciton g ‐Factors With Light in Type‐II Heterostructures
- Optical spin polarization by coherent magnetoabsorption generation
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Low-Field Optical Polarization in Type-II Quantum Dots via Nuclear-Driven Dark State Mixing
- Optical spin polarization by coherent magnetoabsorption generation
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Optical spin polarization by coherent magnetoabsorption generation
- Engineering Exciton g ‐Factors With Light in Type‐II Heterostructures
- Optical spin polarization by coherent magnetoabsorption generation
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Optical spin polarization by coherent magnetoabsorption generation
- Engineering Exciton g ‐Factors With Light in Type‐II Heterostructures
- Optical spin polarization by coherent magnetoabsorption generation
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Effects of short- and long-range disorder in the photoluminescence of GaAs 1 − x Sb x / GaAs quantum wells
- Low-Field Optical Polarization in Type-II Quantum Dots via Nuclear-Driven Dark State Mixing
Similar Researchers
Based on overlapping research topics