1. Semiconductor physics including theoretical design, modeling, and simulation;
2. Semiconductor material growth or synthesis technique, such as Molecular Beam Epitaxy, Sputtering, Thermal Vapor Deposition, Electron Beam Deposition, Pulse Laser Deposition, Chemical Vapor Deposition, Chemical Bath Deposition, Vapor-Solid-Liquid method etc.
3. Semiconductor Devices Design, Fabrication, and Applications including Lasers, Detectors, Solar Cells, Thermo-electric Devices, Metal-Oxide-Semiconductor etc.
4. Low-dimensional and Nano-material synthesis technologies including Chemical Vapor Deposition, Chemical Bath Deposition, VLS method, MBE method, Sol-Gel method etc.
5. Nano-Structured Devices including High Speed Electronic Devices like Transistors etc.; and Optoelectronic Devices, such as Nano-lasers, Nano-Sensors, and Solar cells etc.
2. Semiconductor material growth or synthesis technique, such as Molecular Beam Epitaxy, Sputtering, Thermal Vapor Deposition, Electron Beam Deposition, Pulse Laser Deposition, Chemical Vapor Deposition, Chemical Bath Deposition, Vapor-Solid-Liquid method etc.
3. Semiconductor Devices Design, Fabrication, and Applications including Lasers, Detectors, Solar Cells, Thermo-electric Devices, Metal-Oxide-Semiconductor etc.
4. Low-dimensional and Nano-material synthesis technologies including Chemical Vapor Deposition, Chemical Bath Deposition, VLS method, MBE method, Sol-Gel method etc.
5. Nano-Structured Devices including High Speed Electronic Devices like Transistors etc.; and Optoelectronic Devices, such as Nano-lasers, Nano-Sensors, and Solar cells etc.
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