Joel Benjamin Ruzindana
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Researcher
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Research Areas
Biography and Research Information
OverviewAI-generated summary
Joel Benjamin Ruzindana's research focuses on the physical properties of semiconductor materials, particularly as they relate to quantum computing and photonics. His work investigates the impact of cross-hatch strain on Silicon-Germanium (SiGe) quantum dots, exploring its effects on qubit variability estimation. This research is critical for understanding and mitigating inconsistencies in quantum computing hardware.
Additionally, Ruzindana has explored the engineering of magnetism within layered antiferromagnet metal thiophosphates (MPX3) for novel photonic applications. These investigations contribute to the development of new materials with specific magnetic and optical properties for advanced technological uses. His research collaborations include work with Rabindra Basnet, Manoj Kumar Shah, and Mansour Mortazavi, all affiliated with the University of Arkansas at Pine Bluff.
Metrics
- Publications: 4
Selected Publications
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Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation (2026)
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Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes (2024)
Collaboration Network
Top Collaborators
- Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes
- Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes
- Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes
- Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
- Cross-hatch strain effects on SiGe quantum dots for qubit variability estimation
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