Jose Santos Batista
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Biography and Research Information
OverviewAI-generated summary
Jose Santos Batista's research focuses on the characterization and modeling of terahertz (THz) photoconductive antennas and radar-absorbing materials. His work involves both experimental measurements and computational analysis, aiming to understand and optimize the performance of these components in various frequency bands. He has investigated the impact of electrode materials on THz signal generation and explored the 3D modeling of antennas using software like COMSOL Multiphysics.
Batista's publications address challenges in measuring broadband THz photoconductive antennas and compare experimental results with theoretical models. His research also extends to the free-space characterization of non-magnetic radar-absorbing materials in the W-band and at frequencies between 75 GHz and 90 GHz. He has collaborated with researchers at the University of Arkansas at Fayetteville, including Magda El‐Shenawee, Hugh Churchill, Bilal Pirzada, and Zachary P. Uttley, on these topics.
Metrics
- h-index: 3
- Publications: 8
- Citations: 27
Selected Publications
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Challenges in Measurement of Broadband THz Photoconductive Antennas (2023)
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Experimental and Computational Analysis of Broadband THz Photoconductive Antennas (2023)
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Terahertz Signal Generation Measurements in Photoconductive Antennas using Time Domain Spectroscopy System (2021)
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Investigation of Photoconductive Antenna Electrodes on Terahertz Signal Generation (2021)
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3D Model of Terahertz Photoconductive Antenna using COMSOL Multiphysics (2021)
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Black phosphorus photoconductive terahertz antenna: 3D modeling and experimental reference comparison (2021)
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Characterization of Radar Absorbing Materials at 75 GHz - 90 GHz using Free-Space System (2020)
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Free-Space Characterization of Radar Absorbing Non-Magnetic Materials in the W-Band (2020)
Collaboration Network
Top Collaborators
- Black phosphorus photoconductive terahertz antenna: 3D modeling and experimental reference comparison
- Free-Space Characterization of Radar Absorbing Non-Magnetic Materials in the W-Band
- Experimental and Computational Analysis of Broadband THz Photoconductive Antennas
- Characterization of Radar Absorbing Materials at 75 GHz - 90 GHz using Free-Space System
- Investigation of Photoconductive Antenna Electrodes on Terahertz Signal Generation
Showing 5 of 8 shared publications
- Free-Space Characterization of Radar Absorbing Non-Magnetic Materials in the W-Band
- Characterization of Radar Absorbing Materials at 75 GHz - 90 GHz using Free-Space System
- Black phosphorus photoconductive terahertz antenna: 3D modeling and experimental reference comparison
- Challenges in Measurement of Broadband THz Photoconductive Antennas
- Free-Space Characterization of Radar Absorbing Non-Magnetic Materials in the W-Band
- Experimental and Computational Analysis of Broadband THz Photoconductive Antennas
- Experimental and Computational Analysis of Broadband THz Photoconductive Antennas
- Challenges in Measurement of Broadband THz Photoconductive Antennas
- Challenges in Measurement of Broadband THz Photoconductive Antennas
- Challenges in Measurement of Broadband THz Photoconductive Antennas
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