M. Hasan Doha
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.
Graduate Research Assistant
Also affiliated: University of Dhaka (2015–2018)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
M. Hasan Doha is a graduate research assistant at the University of Arkansas at Fayetteville. His research interests include the study of semiconductor materials and devices, with a focus on two-dimensional (2D) materials and their electronic transport properties. Doha has investigated the Hall mobility and carrier density of black phosphorus exfoliated from bulk crystals and explored the enhancement of transport properties in 2D topological semimetals through current annealing. He has also worked on the challenges associated with measuring broadband terahertz (THz) photoconductive antennas.
Doha's work involves collaborations with faculty at the University of Arkansas at Fayetteville, including Hugh Churchill, Magda El-Shenawee, and Katie Welch, as well as Rabindra Basnet at the University of Arkansas at Pine Bluff. He has a h-index of 6 with 12 total publications and 70 total citations. His most recent publication was in 2023, indicating recent activity in his research field.
Metrics
- h-index: 6
- Publications: 12
- Citations: 74
Positions
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Graduate Research Assistant 2016–presentUniversity of Arkansas Fayetteville Physics ORCID
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Lecturer 2015–2016Ranada Prasad Shaha University Department of EEE ORCID
Selected Publications
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Challenges in Measurement of Broadband THz Photoconductive Antennas (2023)
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Comparison of Hall Mobility and Carrier Density of Thin Black Phosphorus Exfoliated from Bulk Crystals Provided by Various Vendors (2022)
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Enhancement of 2D topological semimetal transport properties by current annealing (2022)
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Analysis of Black Phosphorus Terahertz Photoconductive Antenna (2020)
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Integration of multi-layer black phosphorus into photoconductive antennas for THz emission (2020)
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Integration of multi-layer black phosphorus into photoconductive antennas for THz emission (2020)
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Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials (2019)
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Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals (2019)
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Gate voltage and doping effects on near-field radiation heat transfer in plasmonic heterogeneous pairs of graphene and black phosphorene (2019)
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Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals (2019)
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Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials (2019)
Collaboration Network
Top Collaborators
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Gate voltage and doping effects on near-field radiation heat transfer in plasmonic heterogeneous pairs of graphene and black phosphorene
- Enhancement of 2D topological semimetal transport properties by current annealing
Showing 5 of 11 shared publications
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Comparison of Hall Mobility and Carrier Density of Thin Black Phosphorus Exfoliated from Bulk Crystals Provided by Various Vendors
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Analysis of Black Phosphorus Terahertz Photoconductive Antenna
- Challenges in Measurement of Broadband THz Photoconductive Antennas
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Enhancement of 2D topological semimetal transport properties by current annealing
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Comparison of Hall Mobility and Carrier Density of Thin Black Phosphorus Exfoliated from Bulk Crystals Provided by Various Vendors
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Challenges in Measurement of Broadband THz Photoconductive Antennas
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Enhancement of 2D topological semimetal transport properties by current annealing
- Comparison of Hall Mobility and Carrier Density of Thin Black Phosphorus Exfoliated from Bulk Crystals Provided by Various Vendors
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Enhancement of 2D topological semimetal transport properties by current annealing
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Enhancement of 2D topological semimetal transport properties by current annealing
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Growth and Strain Engineering of Trigonal Te for Topological Quantum Phases in Non-Symmorphic Chiral Crystals
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
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