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Semiconductor Materials

Research focuses on developing new materials or improving existing ones for semiconductor devices. This includes investigating novel materials with desirable properties, such as higher carrier mobility, improved thermal conductivity, or enhanced light-matter interaction.

Device Physics and Modeling

This field involves studying the fundamental principles behind the operation of semiconductor devices, such as transistors, diodes, and optoelectronic devices. Researchers aim to understand device behavior, explore new device concepts, and develop accurate models for simulation and prediction.


Nanotechnology plays a crucial role in semiconductor research. Scientists work on fabricating and characterizing nanoscale devices, exploring quantum effects, and pushing the limits of miniaturization. Areas like carbon-based nanoelectronics, spintronics, and quantum computing fall within this realm.

Semiconductor Fabrication and Processing

Researchers focus on developing advanced techniques and processes for manufacturing semiconductor devices. This involves improving lithography, deposition, etching, and doping methods to achieve higher precision, smaller feature sizes, and higher yields.

​Optoelectronics and Photonics

This field involves the study of semiconductor devices that manipulate or generate light, such as lasers, photodetectors, and light-emitting diodes (LEDs). Research focuses on improving efficiency, developing new materials for light emission or detection, and integrating photonics with electronics.

Power Electronics

Researchers investigate semiconductor devices and systems for efficient power conversion and management. This includes the development of high-voltage devices, wide-bandgap materials, and advanced power semiconductor devices for applications in renewable energy, electric vehicles, and power grids.