Imad H. Agha, Ph.D.

Affiliations: 
2008 Cornell University, Ithaca, NY, United States 
Area:
Quantum and nonlinear photonics and optics
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"Imad Agha"
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Parents

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Alexander L. Gaeta grad student 2008 Cornell
 (Nonlinear optics in high-q silica microspheres.)

Children

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Joshua A. Burrow grad student 2017-2021 University of Dayton (E-Tree)
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Publications

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Chang C, Cheng HH, Sevison GA, et al. (2022) Power-Dependent Investigation of Photo-Response from GeSn-Based p-i-n Photodetector Operating at High Power Density. Materials (Basel, Switzerland). 15
Thompson JR, Burrow JA, Shah PJ, et al. (2020) Artificial neural network discovery of a switchable metasurface reflector. Optics Express. 28: 24629-24656
Guo P, Burrow JA, Sevison GA, et al. (2020) Tungsten-doped Ge2Sb2Te5 phase change material for high-speed optical switching devices Applied Physics Letters. 116: 131901
Sevison GA, Farzinazar S, Burrow JA, et al. (2020) Phase Change Dynamics and Two-Dimensional 4-Bit Memory in Ge2Sb2Te5 via Telecom-Band Encoding Acs Photonics. 7: 480-487
Guo P, Sarangan A, Agha I. (2019) A Review of Germanium-Antimony-Telluride Phase Change Materials for Non-Volatile Memories and Optical Modulators Applied Sciences. 9: 530
Burrow JA, Yahiaoui R, Sarangan A, et al. (2019) Eigenmode hybridization enables lattice-induced transparency in symmetric terahertz metasurfaces for slow light applications Optics Letters. 44: 2705
Mekonen SM, Yahiaoui R, Burrow JA, et al. (2018) Modulation of Electromagnetically Induced Transparency in Toriodal Resonance Terahertz Metasurfaces Frontiers in Optics
Yahiaoui R, Burrow JA, Matthews J, et al. (2018) Tunable Electromagnetically Induced Transparency in Ge2Sb2Te5-Based Infrared Metasurfaces Frontiers in Optics
Yahiaoui R, Burrow JA, Mekonen SM, et al. (2018) Electromagnetically induced transparency control in terahertz metasurfaces based on bright-bright mode coupling Physical Review B. 97
Guo P, Burrow JA, Sevison GA, et al. (2018) Improving the performance of Ge2Sb2Te5 materials via nickel doping: Towards RF-compatible phase-change devices Applied Physics Letters. 113: 171903
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