Doped semiconductors materials have emerged as the preeminent materials platform for development of optoelectronic technologies harnessing the LSPR phenomena in the infrared spectral regime. The capacity to engineer a plasmonic spectral response via doping for optoelectronic applications in the infrared is a proposition of semiconductor nanomaterials pursued in this dissertation. In Chapter 2, we show the impact of axially carrier density gradients on the spectral response of Si nanowires containing multiple resonators. We couple in situ infrared spectral response measurements and discrete dipole approximation (DDA) calculations to show the impact of axially graded carrier density profiles on the optical properties of mid-infrared LSPRs sup...
Plasmonic sensing in the infrared region employs the direct interaction of the vibrational fingerpri...
Plasmonic perfect absorbers have found a wide range of applications in imaging, sensing, and light h...
abstract: Semiconductor nanowires (NWs) are one dimensional materials and have size quantization eff...
Spatial control of carrier density is critical for engineering and exploring the interactions of loc...
We utilize discrete dipole approximation simulations to provide a detailed picture of the scattering...
Plasmonic nanocrystals (NCs) can act as focusing lenses that capture incident light at wavelengths n...
Degenerately doped semiconductor nanocrystals (NC) exhibit a localized surface plasmon resonance (LS...
We observe and systematically tune an intense mid-infrared absorption mode that results from phospho...
ABSTRACT: Semiconductor nanowires, due to their unique electronic, optical, and chemical properties,...
The earliest account of localized surface plasmon resonance (LSPR) has to date back to the ancient a...
This dissertation reports investigations into materials for, and applications of, infrared surface p...
Localized surface plasmon resonance (LSPR) of doped Si nanocrystals (NCs) is critical to the develop...
The research targets the challenge of being able to bring the recently discovered nanophotonics phen...
The use of a localized surface plasmon resonance (LSPR) in nanostructures has been explored in sensi...
Doped semiconductors are investigated as a foundation for plasmonic waveguides and gratings in the m...
Plasmonic sensing in the infrared region employs the direct interaction of the vibrational fingerpri...
Plasmonic perfect absorbers have found a wide range of applications in imaging, sensing, and light h...
abstract: Semiconductor nanowires (NWs) are one dimensional materials and have size quantization eff...
Spatial control of carrier density is critical for engineering and exploring the interactions of loc...
We utilize discrete dipole approximation simulations to provide a detailed picture of the scattering...
Plasmonic nanocrystals (NCs) can act as focusing lenses that capture incident light at wavelengths n...
Degenerately doped semiconductor nanocrystals (NC) exhibit a localized surface plasmon resonance (LS...
We observe and systematically tune an intense mid-infrared absorption mode that results from phospho...
ABSTRACT: Semiconductor nanowires, due to their unique electronic, optical, and chemical properties,...
The earliest account of localized surface plasmon resonance (LSPR) has to date back to the ancient a...
This dissertation reports investigations into materials for, and applications of, infrared surface p...
Localized surface plasmon resonance (LSPR) of doped Si nanocrystals (NCs) is critical to the develop...
The research targets the challenge of being able to bring the recently discovered nanophotonics phen...
The use of a localized surface plasmon resonance (LSPR) in nanostructures has been explored in sensi...
Doped semiconductors are investigated as a foundation for plasmonic waveguides and gratings in the m...
Plasmonic sensing in the infrared region employs the direct interaction of the vibrational fingerpri...
Plasmonic perfect absorbers have found a wide range of applications in imaging, sensing, and light h...
abstract: Semiconductor nanowires (NWs) are one dimensional materials and have size quantization eff...