Delves into quantum computing fundamentals, including entanglement, quantum gates, and algorithms, emphasizing unitary transformations and quantum coherence.
Explores the Eigenstate Thermalization Hypothesis in quantum systems, emphasizing the random matrix theory and the behavior of observables in thermal equilibrium.
Explores the development of MEMS-based laser projectors, magnetic MEMS mirrors, and quantum sensing solutions for industrial applications and quantum computing.
Covers the design and operation of Quantum Well and Dot Infrared Photodetectors, highlighting their principles, applications, and performance characteristics.