Quang Minh Thai
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Research Associate
Also affiliated: Commissariat à l'Énergie Atomique et aux Énergies Alternatives (2019); CEA Grenoble (2019); Institut de Recherche Interdisciplinaire de Grenoble (2019); Université Grenoble Alpes (2019)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Quang Minh Thai's research has explored various biological and materials science topics. Early work investigated the biosynthesis of coenzyme Q in *Saccharomyces cerevisiae*, focusing on the function of specific genes and the necessity of exogenous coenzyme Q for mitochondrial stability in mutant strains. This research also examined the sensitivity of ubiquinone-deficient yeast mutants to polyunsaturated fatty acids. More recent publications demonstrate a focus on semiconductor materials, specifically GeSn lasers, with work on tuning their wavelength range through applied strain and achieving room-temperature operation in microdisk laser devices. Collaborations include work with Yanqing Qiu, Steven Akwabli, Hryhorii Stanchu, and Sudip Acharya, all at the University of Arkansas at Fayetteville.
Metrics
- h-index: 2
- Publications: 8
- Citations: 4
Positions
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Research Associate 2024–presentUniversity of Arkansas at Fayetteville Electrical Engineering ORCID
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Postdoc researcher publications 2025–2026University of Arkansas at Fayetteville Listing
Selected Publications
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Germanium-tin (GeSn) avalanche photodiode for detection at 2 µm wavelength (2026)
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Germanium-tin (GeSn) photodiodes with thick absorber for SWIR and extended SWIR detection (2026)
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Epitaxial Growth and Structural Evolution of Lattice-Matched SiGeSn/Ge Heterostructures with Si Composition up to 42% (2026)
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High-quality GeSn grown in foundry mode via chemical vapor deposition enabling lasing up to 235 K (2025)
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Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation) (2025)
Collaboration Network
Top Collaborators
- High-quality GeSn grown in foundry mode via chemical vapor deposition enabling lasing up to 235 K
- Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation)
- High-quality GeSn grown in foundry mode via chemical vapor deposition enabling lasing up to 235 K
- Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation)
- Germanium-tin (GeSn) photodiodes with thick absorber for SWIR and extended SWIR detection
- Germanium-tin (GeSn) avalanche photodiode for detection at 2 µm wavelength
- Germanium-tin (GeSn) photodiodes with thick absorber for SWIR and extended SWIR detection
- Germanium-tin (GeSn) avalanche photodiode for detection at 2 µm wavelength
- Germanium-tin (GeSn) photodiodes with thick absorber for SWIR and extended SWIR detection
- Germanium-tin (GeSn) avalanche photodiode for detection at 2 µm wavelength
- Germanium-tin (GeSn) photodiodes with thick absorber for SWIR and extended SWIR detection
- Germanium-tin (GeSn) avalanche photodiode for detection at 2 µm wavelength
- Germanium-tin (GeSn) photodiodes with thick absorber for SWIR and extended SWIR detection
- Germanium-tin (GeSn) avalanche photodiode for detection at 2 µm wavelength
- Germanium-tin (GeSn) photodiodes with thick absorber for SWIR and extended SWIR detection
- Germanium-tin (GeSn) avalanche photodiode for detection at 2 µm wavelength
- Germanium-tin (GeSn) photodiodes with thick absorber for SWIR and extended SWIR detection
- Germanium-tin (GeSn) avalanche photodiode for detection at 2 µm wavelength
- Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation)
- Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation)
- Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation)
- Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation)
- Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation)
- Monolithically grown germanium-tin (GeSn) infrared avalanche photodiodes on silicon (Conference Presentation)
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