The realization of wavelength scale and sub-wavelength scale fabrication of integrated optical devices has led to a concurrent need for computational design tools that can accurately model electromagnetic phenomena on these length scales. This dissertation describes the physical, analytical, numerical, and software developments utilized for practical implementation of two particular frequency domain design tools: the modal method for multilayer waveguides and one-dimensional lamellar gratings and the Rigorous Coupled Wave Analysis (RCWA) for 1D, 2D, and 3D periodic optical structures and integrated optical devices. These design tools, including some novel numerical and programming extensions developed during the course of this work, were th...
This dissertation includes three separate studies of related waveguide grating phenomena. These stud...
The spectral separation of resonances within multiwavelength resonant grating filters is studied thr...
Integrated optics-based approaches to beam steering, beam shaping, beam collimation, and quasi-phase...
Guided mode resonant (GMR) structures are optical devices that consist of a planar waveguide with a ...
This dissertation addresses electromagnetic analysis and design of waveguide-grating devices based o...
Our immediate objective is to understand the limitations of guided-wave and grating coupler devices ...
Resonant grating waveguide structures (GWS) are candidates for extreme narrow line reflection filter...
The device presented in this paper is designed for coupling a free space optical wave under quasi-no...
Resonant waveguide gratings (RWGs), also known as guided mode resonant (GMR) gratings or waveguide-m...
Resonant waveguide gratings (RWGs), also known as guided mode resonant (GMR) gratings or waveguide-m...
This dissertation develops a theoretical framework for guided mode resonance filters (GMRFs) with su...
Guided mode resonance filters (GMRF) combine subwavelength gratings and planar slab waveguides to cr...
A novel multiline filter using a two-dimensional guided-mode resonant (GMR) filter is proposed. The ...
A novel multiline filter using a two-dimensional guided-mode resonant (GMR) filter is proposed. The ...
Grating structures have found applications in microwave, millimeter wave, and optical devices and sy...
This dissertation includes three separate studies of related waveguide grating phenomena. These stud...
The spectral separation of resonances within multiwavelength resonant grating filters is studied thr...
Integrated optics-based approaches to beam steering, beam shaping, beam collimation, and quasi-phase...
Guided mode resonant (GMR) structures are optical devices that consist of a planar waveguide with a ...
This dissertation addresses electromagnetic analysis and design of waveguide-grating devices based o...
Our immediate objective is to understand the limitations of guided-wave and grating coupler devices ...
Resonant grating waveguide structures (GWS) are candidates for extreme narrow line reflection filter...
The device presented in this paper is designed for coupling a free space optical wave under quasi-no...
Resonant waveguide gratings (RWGs), also known as guided mode resonant (GMR) gratings or waveguide-m...
Resonant waveguide gratings (RWGs), also known as guided mode resonant (GMR) gratings or waveguide-m...
This dissertation develops a theoretical framework for guided mode resonance filters (GMRFs) with su...
Guided mode resonance filters (GMRF) combine subwavelength gratings and planar slab waveguides to cr...
A novel multiline filter using a two-dimensional guided-mode resonant (GMR) filter is proposed. The ...
A novel multiline filter using a two-dimensional guided-mode resonant (GMR) filter is proposed. The ...
Grating structures have found applications in microwave, millimeter wave, and optical devices and sy...
This dissertation includes three separate studies of related waveguide grating phenomena. These stud...
The spectral separation of resonances within multiwavelength resonant grating filters is studied thr...
Integrated optics-based approaches to beam steering, beam shaping, beam collimation, and quasi-phase...