Yadgar I. Abdulkarim
Also known as: Yadgar Gulius
Charmo University, University of Alberta, Central South University, University of Sulaymaniyah
About
Yadgar is a researcher at the University of Alberta.Canada. He completed his MSc at the Department of Physics, the National University of Kharkiv V.N.Karazin- Ukraine in 2012.
He received his PhD at the School of Physics and Electronics, Central South University in 2020. He is also a member of the research group Department of Electrical and Electronics, Iskenderun Technical University, Hatay, Turkey. His current research interests include Microwave Technology, Antennas, Design, Simulation and fabrication of Metamaterials for microwave, THz applications, and Biosensors.
Employment
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University of Alberta Researcher2023 - 2024
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University of Alberta Postdoctoral2022 - 2023
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Central South University PhD Student2016 - 2021
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Charmo University Faculty member2007 - Present
Education
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Central South University PhD2016 - 2020
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University of Sulaymaniyah Bachelor in Physics2003 - 2007
Projects & Funding
Projects & funding information is unavailable.
Publications (37)
- Broadband Metamaterial Absorbers for Organic Solar Cells Save
- Detection of breast tumor with a frequency selective surface loaded ultra-wide band antenna system Save
- Inverse design of ultra-wideband transparent frequency selective surface absorbers based on evolutionary deep learning Save
- A study on electronically controllable beamforming monopole antenna for telecommunication applications Save
- Simulation and lithographic fabrication of a triple band terahertz metamaterial absorber coated on flexible polyethylene terephthalate substrate Save
- New compact six-band metamaterial absorber based on Closed Circular Ring Resonator (CCRR) for Radar applications Save
- Highly sensitive metamaterial-based microwave sensor for the application of milk and dairy products Save
- A Symmetrical Terahertz Triple-Band Metamaterial Absorber Using a Four-Capacitance Loaded Complementary Circular Split Ring Resonator and an Ultra-Thin ZnSe Substrate Save
- Enhanced Sensing Capacity of Terahertz Triple-Band Metamaterials Absorber Based on Pythagorean Fractal Geometry Save
- Low-Cost Antenna-Array-Based Metamaterials for Non-Invasive Early-Stage Breast Tumor Detection in the Human Body Save