UV Solid-State Light Emitters and Detectors

UV Solid-State Light Emitters and Detectors

Einband:
Kartonierter Einband
EAN:
9781402020353
Untertitel:
Englisch
Herausgeber:
Springer Netherlands
Auflage:
Softcover reprint of the original 1st ed. 2004
Anzahl Seiten:
324
Erscheinungsdatum:
31.05.2004
ISBN:
140202035X

Infrared and visible light LEDs and photodetectors have found numerous applications and have become a truly enabling technology. The promise of solid state lighting has invigorated interest in white light LEDs. Ultraviolet LEDs and solar blind photodetectors represent the next frontier in solid state emitters and hold promise for many important applications in biology, medi cine, dentistry, solid state lighting, displays, dense data storage, and semi conductor manufacturing. One of the most important applications is in sys tems for the identification of hazardous biological agents. Compared to UV lamps, UV LEDs have lower power consumption, a longer life, compactness, and sharper spectral lines. UV LEDs can provide a variety of UV spectra and have shape and form factor flexibility and rugged ness. Using conventional phosphors, UV LEDs can generate white light with high CRI and high efficiency. If quantum cutter phosphors are developed, white light generation by UV LEDs might become even more efficient. Advances in semiconductor materials and in improved light extraction techniques led to the development of a new generation of efficient and pow erful visible high-brightness LEDs and we expect that similar improvements will be achieved in solid-state UV technology.

Autorentext
Michael S. Shsur received an MSEE (with honors) from St. Petersburg Electrotechnical Institute and a PhD in Physics and a doctor of science degree from A. F. Ioffe Institute. From 1989 to 1996, he was John Money Professor at the University of Virginia, where he served as director of the Applied ElectroPhysics Laboratory. He is currently Roberts Professor of Solid State Electronics, Professor of Physics, Professor of Information Technology, and Director of the Center for Broadband Data Transport Science and Technology at Rensselaer Polytechnic Institute.

Klappentext
Ultraviolet LEDs and solar blind detectors represent the next frontier in solid state emitter technology, holding out the prospect of many major applications, including the identification of hazardous biological agents. The current work draws together leading researchers in UV semiconductor technology and systems applications. Topics covered include basic device issues, substrates, epitaxial growth, materials characterization, nitride quaternary alloys, doping, strain energy band engineering, quantum phosphors, ohmic contacts and Schottky barriers, UV LED device design and performance, thermal management, and applications such as hazardous agent sensing, solid state lighting, environmental control, and optical measurement.

Inhalt
Basic Device Issues in UV Solid-State Emitters and Detectors.- HVPE-Grown AlN-GaN Based Structures for UV Spectral Region.- GaN-Based Laser Diodes.- Quaternary AlInGaN Materials System for UV Optoelectronics.- III-Nitride Based UV Light Emiting Diodes.- UV Metal Semiconductor Metal Detectors.- Characterization of Advanced Materials for Optoelectronics by Using UV Lasers and Four-Wave Mixing Techniques.- Quantum Phospors.- Optical Measurements Using Light-Emitting Diodes.- Novel AlGaN Heterostructures for UV Sensors and Leds.- Nitride Photodetectors in UV Biological Effects Studies.- Promising Results of Plasma Assisted MBE for Optoelectronic Applications.- Low Dislocations Density GaN/Sapphire for Optoelectronic Devices.- Stimulated Emission and Gain in GaN Epilayers Grown on Si.- Materials Characterization of Group-III Nitrides under High-Power Photoexcitation.- Small Internal Electric Fields in Quaternary InAlGaN Heterostructures.- MOCVD Growth of AlGaN Epilayers and AlGaN/GaN SLs in a Wide Composition Range.- Gallium Nitride Schottky Barriers and MSM UV Detectors.- III-Nitride Based Ultraviolet Surface Acoustic Wave Sensors.- Optically Pumped InGaN/GaN/AlGaN MQW Laser Structures.- High Power LED and Thermal Management.- Detection of Blue Light by Self-Assembled Monolayer of Dipolar Molecules.- Atomic and Molecular Spectroscopy with UV and Visible Superbright LEDs.- Semi-Insulating GaN and its First Tests for Radiation Hardness as an Ionizing Radiation Detector.- Towards the Hybrid Biosensors Based on Biocompatible Conducting Polymers.- Optically Pumped UV-Blue Lasers Based on InGaN/GaN/Al2O3 and InGaN/GaN/Si Heterostructures.- Key Word Index.- Author Index.


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