Bilal Pirzada Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Graduate research and teaching assistant
grad_student
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Bilal Pirzada's research focuses on semiconductor materials and devices, particularly High Electron Mobility Transistors (HEMTs). His work includes comparative analyses of different HEMT structures, such as AlGaAs/GaAs and AlGaN/GaN, investigating their band diagrams and electrical performance. Pirzada also explores modulation doping techniques for HEMTs and examines the influence of barrier layer composition on the electrical behavior of AlGaN HEMTs. His research extends to device optimization, including physics-based modeling of multi-finger GaN-HEMTs to determine optimal device width. Pirzada has also contributed to research on wireless power transfer systems, specifically developing mid-range systems utilizing beam forming for portable electronic devices. Additionally, his work includes the experimental and computational analysis of broadband Terahertz (THz) photoconductive antennas.
Metrics
- h-index: 2
- Publications: 7
- Citations: 6
Selected Publications
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Exploring the Electrical Behavior of AlGaN HEMTs: a Parametric Analysis on the Barrier Layer Composition (2025)
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AlGaAs/GaAs vs. AlGaN/GaN HEMTs: Comparing Band Diagrams and Electrical Performance (2025)
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Modulation Doping Techniques for AlGaAs/GaAs HEMTs: a Comparative Analysis (2025)
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Physics Based Modeling of Multi-Finger GaN-HEMTs: Device Width Optimization (2025)
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Experimental and Computational Analysis of Broadband THz Photoconductive Antennas (2023)
Collaboration Network
Top Collaborators
- Modulation Doping Techniques for AlGaAs/GaAs HEMTs: a Comparative Analysis
- AlGaAs/GaAs vs. AlGaN/GaN HEMTs: Comparing Band Diagrams and Electrical Performance
- Exploring the Electrical Behavior of AlGaN HEMTs: a Parametric Analysis on the Barrier Layer Composition
- Physics Based Modeling of Multi-Finger GaN-HEMTs: Device Width Optimization
- Exploring the Electrical Behavior of AlGaN HEMTs: a Parametric Analysis on the Barrier Layer Composition
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- A mid-range wireless power transfer system for portable electronic devices using beam forming
- Experimental and Computational Analysis of Broadband THz Photoconductive Antennas
- Experimental and Computational Analysis of Broadband THz Photoconductive Antennas
- Experimental and Computational Analysis of Broadband THz Photoconductive Antennas
- Physics Based Modeling of Multi-Finger GaN-HEMTs: Device Width Optimization
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