We investigate and engineer electromagnetic and optical waves for sensing, communications, imaging, and emerging technologies, with a particular focus on the terahertz regime and structured wave phenomena.
We design, generate, and control electromagnetic and optical beams with tailored spatial, spectral, and polarization properties. Our research explores novel beam architectures, unconventional wave propagation, and their applications in sensing, imaging, and communication systems.
We develop terahertz and sub-terahertz technologies for high-resolution sensing, radar, and wireless communications. Our research addresses propagation, system design, beam engineering, and signal processing for operation in complex and challenging environments.
We explore new approaches to wave manipulation, photonic systems, and the interaction of electromagnetic waves with complex environments. This research connects fundamental wave physics with emerging devices, systems, and applications.
Our research combines several complementary areas that span multiple projects and applications.
Fundamental modeling and analysis of wave propagation and interaction with complex environments.
Design and implementation of devices, components, and experimental systems.
Methods for sensing, communications, imaging, and information extraction.
Real-world applications in sensing, imaging, communications, and beyond.
Our research combines theoretical analysis, device and system development, and experimental validation to advance the next generation of wave-based technologies.