Manoj Kumar Shah Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Postdoctoral Fellow
postdoc
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Manoj Kumar Shah's research focuses on the development and characterization of advanced materials for photonic and optoelectronic applications. His work includes studying halide perovskite-polymer composite films for light-emitting devices and investigating low-loss GaAs/AlGaAs-on-sapphire waveguides for photonic integrated circuits. Shah also examines engineering magnetism in layered antiferromagnets for novel photonic processes. His scholarship metrics include an h-index of 6, with 14 total publications and 195 total citations. He has collaborated with researchers including Mansour Mortazavi and Manoj R. Shah from the University of Arkansas at Pine Bluff, and Wei Du from the University of Arkansas at Fayetteville.
Metrics
- h-index: 20
- Publications: 59
- Citations: 1,270
Selected Publications
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Study of group III-V waveguides on sapphire platform for photonic integrated circuits (2025)
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Halide perovskite-polymer composite film for bright and stable light-emitting devices (2025)
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Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes (2024)
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Halide perovskite and polymer composite film for bright light emitting devices (2024)
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Low-Loss GaAs/AlGaAs-On-Sapphire Waveguides for Sapphire Based Photonic Integrated Circuits (2023)
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Current Modulation Induced Stability in Laser Diode Under High Optical Feedback Strength (2021)
Collaboration Network
Top Collaborators
- Low-Loss GaAs/AlGaAs-On-Sapphire Waveguides for Sapphire Based Photonic Integrated Circuits
- Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes
- Study of Group III-V Waveguides on Sapphire Platform for Photonic Integrated Circuits
- Low-Loss GaAs/AlGaAs-On-Sapphire Waveguides for Sapphire Based Photonic Integrated Circuits
- Study of Group III-V Waveguides on Sapphire Platform for Photonic Integrated Circuits
- Low-Loss GaAs/AlGaAs-On-Sapphire Waveguides for Sapphire Based Photonic Integrated Circuits
- Study of Group III-V Waveguides on Sapphire Platform for Photonic Integrated Circuits
- Low-Loss GaAs/AlGaAs-On-Sapphire Waveguides for Sapphire Based Photonic Integrated Circuits
- Study of Group III-V Waveguides on Sapphire Platform for Photonic Integrated Circuits
- Low-Loss GaAs/AlGaAs-On-Sapphire Waveguides for Sapphire Based Photonic Integrated Circuits
- Study of Group III-V Waveguides on Sapphire Platform for Photonic Integrated Circuits
- Current Modulation Induced Stability in Laser Diode Under High Optical Feedback Strength
- Current Modulation Induced Stability in Laser Diode Under High Optical Feedback Strength
- Current Modulation Induced Stability in Laser Diode Under High Optical Feedback Strength
- Current Modulation Induced Stability in Laser Diode Under High Optical Feedback Strength
- Effect of Different Protein Diets on the Growth Performance of Turkey
- Effect of Different Protein Diets on the Growth Performance of Turkey
- Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes
- Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes
- Engineering magnetism in layered antiferromagnets metal thiophosphates MPX3 for novel photonic processes
- Study of Group III-V Waveguides on Sapphire Platform for Photonic Integrated Circuits
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