Jane Thompson
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Biography and Research Information
OverviewAI-generated summary
Jane Thompson's research interests span multiple disciplines, with recent publications focusing on the integration of advanced materials into electronic devices and healthcare-related topics. Her work includes investigations into multilayer graphene, black phosphorus for THz emission, and graphene variable capacitors for vibration-based applications. Thompson has also contributed to guidance for healthcare professionals regarding the care of adult patients with cognitive impairment during the COVID-19 pandemic. Her scholarship metrics include an h-index of 5, with 125 total publications and 58 total citations. She has collaborated with several researchers at the University of Arkansas at Fayetteville, including David Thompson, Hugh Churchill, Yuriy I. Mazur, and Nirosh M. Eldose.
Metrics
- h-index: 5
- Publications: 125
- Citations: 58
Selected Publications
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The role of key characteristics in sport horses as valued by buyers (2025)
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Thermal stability study of gallium nitride based magnetic field sensor (2023)
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Array of Graphene Variable Capacitors on 100 mm Silicon Wafers for Vibration-Based Applications (2022)
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Tuning Supercurrent in Josephson Field-Effect Transistors Using h-BN Dielectric (2021)
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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)
Collaboration Network
Top Collaborators
- Tuning Supercurrent in Josephson Field-Effect Transistors Using h-BN Dielectric
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Array of Graphene Variable Capacitors on 100 mm Silicon Wafers for Vibration-Based Applications
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
Showing 5 of 6 shared publications
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Tuning Supercurrent in Josephson Field-Effect Transistors Using h-BN Dielectric
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- Tuning Supercurrent in Josephson Field-Effect Transistors Using h-BN Dielectric
- Integration of multi-layer black phosphorus into photoconductive antennas for THz emission
- 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
- Multilayer graphene, Moiré patterns, grain boundaries and defects identified by scanning tunneling microscopy on the m-plane, non-polar surface of SiC
- Array of Graphene Variable Capacitors on 100 mm Silicon Wafers for Vibration-Based Applications
- 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
- Exfoliation and Analysis of Large-area, Air-Sensitive Two-Dimensional Materials
- Multilayer graphene, Moiré patterns, grain boundaries and defects identified by scanning tunneling microscopy on the m-plane, non-polar surface of SiC
- Multilayer graphene, Moiré patterns, grain boundaries and defects identified by scanning tunneling microscopy on the m-plane, non-polar surface of SiC
- Multilayer graphene, Moiré patterns, grain boundaries and defects identified by scanning tunneling microscopy on the m-plane, non-polar surface of SiC
- Multilayer graphene, Moiré patterns, grain boundaries and defects identified by scanning tunneling microscopy on the m-plane, non-polar surface of SiC
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