abstract: Light Emitting Diodes even with their longer life, robust build and low power consumption, they are still plagued by some problems the most significant of which are the current droop and thermal droop. Current droop causes a lowering in the Internal Quantum Efficiency with increased current injection while thermal droop lowers the whole Internal Quantum Efficiency curve with increase in temperature. The focus here was understanding effects of thermal droop and develop a method to control it. Shockley Read Hall recombination plays a dominant role in the thermal droop effect when the current injection is low. Since the blue light emitting diode is based on Gallium Nitride, we need to take into consideration the effect of piezoelect...
Wide band gap semiconductors doped with rare earth ions (RE) have shown great potential for applicat...
abstract: This thesis summarizes the research work carried out on design, modeling and simulation of...
University of Minnesota Ph.D. dissertation. August 2017. Major: Material Science and Engineering. Ad...
thesisThe indium-gallium-nitride on gallium-nitride (InGaN/GaN) materials system is a promising cand...
OPTICAL CHARACTERIZATION OF INGAN HETEROSTRUCTURES FOR BLUE LIGHT EMITTERS AND VERTICAL CAVITY LASER...
This thesis reports the main results obtained from the Ph.D. research activity of the candidate. The...
InGaN heterostructures are at the core of blue light emitting diodes (LEDs) which are the basic buil...
Indium gallium nitride (InGaN) is a semiconductor material that is in widespread use in blue light e...
Thermal radiation occurs when electromagnetic energy is emitted from one body and absorbed by anothe...
The interband cascade (IC) family of devices has been extended beyond mid-infrared lasers to include...
Light emitting transistors (LETs) and transistor lasers (TLs) are newly-emerging optoelectronic devi...
Organic light-emitting diodes (OLEDs) are poised to realize high performance for innovative display ...
A ridge-waveguide 1.55-μm semiconductor laser with a multiple-quantum-well carrier confinement struc...
The InGaN/GaN material system is critical for optoelectronic applications because it has direct band...
Single photon emitters are critical resources for quantum science and technologies. More specificall...
Wide band gap semiconductors doped with rare earth ions (RE) have shown great potential for applicat...
abstract: This thesis summarizes the research work carried out on design, modeling and simulation of...
University of Minnesota Ph.D. dissertation. August 2017. Major: Material Science and Engineering. Ad...
thesisThe indium-gallium-nitride on gallium-nitride (InGaN/GaN) materials system is a promising cand...
OPTICAL CHARACTERIZATION OF INGAN HETEROSTRUCTURES FOR BLUE LIGHT EMITTERS AND VERTICAL CAVITY LASER...
This thesis reports the main results obtained from the Ph.D. research activity of the candidate. The...
InGaN heterostructures are at the core of blue light emitting diodes (LEDs) which are the basic buil...
Indium gallium nitride (InGaN) is a semiconductor material that is in widespread use in blue light e...
Thermal radiation occurs when electromagnetic energy is emitted from one body and absorbed by anothe...
The interband cascade (IC) family of devices has been extended beyond mid-infrared lasers to include...
Light emitting transistors (LETs) and transistor lasers (TLs) are newly-emerging optoelectronic devi...
Organic light-emitting diodes (OLEDs) are poised to realize high performance for innovative display ...
A ridge-waveguide 1.55-μm semiconductor laser with a multiple-quantum-well carrier confinement struc...
The InGaN/GaN material system is critical for optoelectronic applications because it has direct band...
Single photon emitters are critical resources for quantum science and technologies. More specificall...
Wide band gap semiconductors doped with rare earth ions (RE) have shown great potential for applicat...
abstract: This thesis summarizes the research work carried out on design, modeling and simulation of...
University of Minnesota Ph.D. dissertation. August 2017. Major: Material Science and Engineering. Ad...