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Integration of Resonant Plasmonic Nanostructures with 2D Materials: Strategies and Applications beyond the Visible regime
Plasmonics deals with the interaction of incident electromagnetic waves with the free electron gas within metal nanostructures, enabling rapid signal processing and the confinement of light into subwavelength scales, leading ...
Dynamics of a Suspended Microchannel Resonator
Micro-Electro-Mechanical-System (MEMS) mass sensing devices have a wide variety of applications in healthcare diagnostics and biosciences. Typically, mass sensing on a MEMS device works by physisorption and chemisorption ...
Architectures for linewidth reduction in cascaded Raman fiber lasers and applications
Fiber lasers have been increasingly used as a high-power source due to several advantages, such as superior beam quality, better thermal management, high efficiency, and compact and reliable design. In fiber lasers, ...
Development of Microsystem Platforms Towards Cancer Diagnostics and Therapeutics
This thesis explores the development and application of microsystems to advance our understanding of disease biology. The overarching goal is to enhance diagnostic and therapeutic strategies through precise and physiologically ...
Improving Efficiency of Perovskite and Silicon Solar Cells by Reducing Surface Recombination, Bulk Recombination, and Thermalization Losses
Solar photovoltaic (PV) technology stands at the forefront of renewable energy solutions, driven by the urgent need to mitigate climate change and secure sustainable energy sources. As the demand for cleaner energy ...
Engineering Quality Factor in Micro/Nano Resonating Devices
Micro/Nano resonating devices offer enormous potential and have distinctive features for building sensors and actuators. One of the key parameters that control the response of these devices is Quality Factor (Q). Q is ...
Analog Compute for Edge-AI: Devices, Circuits & SoC
Machine Learning and Artificial Intelligence research has yielded models with huge computational complexities to solve a multitude of problems. These complex models require substantial computational resources to perform ...
Deeply Scaled InAlN/GaN-on-Silicon High Electron Mobility Transistors for RF Applications
Wide bandgap gallium nitride (GaN) based high electron mobility transistors (HEMTs) are promising candidates for next-generation radio frequency (RF) power amplifier applications owing to high electron saturation velocity ...
Gallium Oxide based High Voltage Diode : Design, Fabrication, Characterization and Modelling
High-efficiency power electronic devices intend to play a significant role in curbing global warming and enhancing energy conservation. Owing to its superior material properties, Gallium oxide (Ga2O3) has emerged as a new ...
PZT Based High-speed Electro-Optic Modulator- Material Development, Fabrication, and Photonic Device Characterization
Electro-optic (EO) modulator is a device that converts the electrical signal into an equivalent optical signal, which finds application in fields such as modulating the power of a laser beam, high-speed digital data ...

