Open Access. Powered by Scholars. Published by Universities.®
Semiconductor and Optical Materials Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Institution
-
- Chinese Chemical Society | Xiamen University (63)
- University of Arkansas, Fayetteville (50)
- Air Force Institute of Technology (34)
- Old Dominion University (30)
- University of New Mexico (14)
-
- California Polytechnic State University, San Luis Obispo (12)
- Virginia Commonwealth University (12)
- Purdue University (9)
- University of Nebraska - Lincoln (9)
- University of Malaya (8)
- University of Nevada, Las Vegas (7)
- Clemson University (6)
- University of Kentucky (6)
- New Jersey Institute of Technology (4)
- University at Albany, State University of New York (4)
- City University of New York (CUNY) (3)
- Linfield University (3)
- Louisiana State University (3)
- Michigan Technological University (3)
- University of Central Florida (3)
- West Virginia University (3)
- Missouri State University (2)
- Portland State University (2)
- University of Louisville (2)
- University of South Carolina (2)
- Washington University in St. Louis (2)
- Arcadia University (1)
- Binghamton University (1)
- Chapman University (1)
- Chulalongkorn University (1)
- Keyword
-
- Applied sciences (14)
- Photoelectrochemistry (11)
- Semiconductors (11)
- Silicon (9)
- Thin films (9)
-
- Semiconductor (8)
- Etching (7)
- Molecular beam epitaxy (7)
- Semiconductor switches (7)
- Atomic force microscopy (6)
- GaN (6)
- Graphene (6)
- Photonics (6)
- Plasmonics (6)
- Annealing (5)
- Gallium arsenide (5)
- GeSn (5)
- Photoluminescence (5)
- Photovoltaic (5)
- Silicon carbide (5)
- TiO2 (5)
- III-V semiconductors (4)
- Metamaterials (4)
- Microelectronics (4)
- Nanocrystals (4)
- Optoelectronics (4)
- Photoconductivity (4)
- Photocurrent (4)
- Photodetectors (4)
- Polarization (4)
- Publication Year
- Publication
-
- Journal of Electrochemistry (63)
- Graduate Theses and Dissertations (42)
- Theses and Dissertations (20)
- Electrical & Computer Engineering Faculty Publications (15)
- Faculty Publications (14)
-
- Electrical & Computer Engineering Theses & Dissertations (12)
- AFIT Patents (10)
- Master's Theses (9)
- The Summer Undergraduate Research Fellowship (SURF) Symposium (9)
- Department of Electrical and Computer Engineering: Dissertations, Theses, and Student Research (7)
- Electrical & Computer Engineering Faculty Research (6)
- All Dissertations (5)
- Electrical and Computer Engineering ETDs (5)
- Optical Science and Engineering ETDs (5)
- Electrical and Computer Engineering Publications (4)
- Electronic Theses & Dissertations (2024 - present) (4)
- Student Works (2020-2029) (4)
- Dissertations, Master's Theses and Master's Reports (3)
- Graduate Theses, Dissertations, and Problem Reports (ETD) (3)
- LSU Doctoral Dissertations (3)
- Senior Theses (3)
- Dissertations (2)
- Electrical Engineering Undergraduate Honors Theses (2)
- Electronic Theses and Dissertations (2)
- Graduate Theses/Dissertations (2)
- Materials Engineering (2)
- McKelvey School of Engineering Graduate Student Theses & Dissertations (2)
- Mechanical Engineering ETDs (2)
- Physics Faculty Publications (2)
- Student Works (2000-2009) (2)
- Publication Type
Articles 301 - 311 of 311
Full-Text Articles in Semiconductor and Optical Materials
Study Of Single-Fiber Fiber Optic Lever Microphone, Trung Duc Nguyen
Study Of Single-Fiber Fiber Optic Lever Microphone, Trung Duc Nguyen
Electrical & Computer Engineering Theses & Dissertations
Fiber optic sensors are widely used in today's technological applications, providing many advantages that conventional sensors lack. In particular, there is a demand in hypersonic applications to develop microphones to measure acoustic pressure that performs in high temperature and noisy surroundings. This thesis analyzes fiber optic lever microphones (FOLM), since they perform at high temperatures. An FOLM system is an intensity modulated sensor, which is simple to implement and is small in size. Two models of the FOLM have been fabricated and calibrated. The first model uses a seven-element fiber array while the second uses a single-fiber to transmit and …
A Novel Technique For Deep Level Characterization Of High-Resistivity Semiconductor Materials, Sridhar Panigrahi
A Novel Technique For Deep Level Characterization Of High-Resistivity Semiconductor Materials, Sridhar Panigrahi
Electrical & Computer Engineering Theses & Dissertations
An improved photo induced current transient spectroscopy (PICTS) technique is developed for studying deep level parameters in high-resistivity semiconductor materials. A new digital data acquisition approach and improvement in the cryogenics of the system have enabled us, for the first time in our laboratory, to detect CuA level in a copper doped silicon compensated gallium arsenide (GaAs:Si:Cu) sample. The digital approach improves both the signal to noise ratio (S/N) and the efficiency of the system. Also, multiple PICTS spectra in a single thermal cycle can be obtained. In the present work, various doped and undoped gallium arsenide ( GaAs) and …
Cathodoluminescence Of Gaas, Tyler Smith
Cathodoluminescence Of Gaas, Tyler Smith
Electrical & Computer Engineering Theses & Dissertations
Cathodoluminescence of band-gap radiation across the bulk of a proposed semiconductor switch has been studied. Such a device relies on the efficient use of cathodoluminescence to modulate the conductivity of the switch. Diagnostics were configured to measure the intensity of band-gap radiation across the bulk of several switch samples. The measured results were compared to calculations based on a four energy level band-gap model which included two deep levels EL2 and HL10.
Q Improvement Of A 5.2 Ghz Te011 Cavity By Incorporating Y1Ba2Cu3O7-X, R. Joseph Leclear
Q Improvement Of A 5.2 Ghz Te011 Cavity By Incorporating Y1Ba2Cu3O7-X, R. Joseph Leclear
Electrical & Computer Engineering Theses & Dissertations
Research is undertaken to apply high temperature superconducting material to improve the quality factor (Q) of a 5.2 GHz cylindrical resonant cavity. In particular, the approach is to electrophoretically deposit polycrystalline Y1Ba2Cu3O7-x (YBCO) on the conducting surface of the cavity cylinder. Spalling of the YBCO ceramic coating due to expansion and contraction of the cavity during sintering and testing is overcome by segmenting the cylinder. Results show that the Q of the cavity is increased over that of a copper cavity at temperatures below 60 K. At 20 K, improvement exceeds a factor …
Monte Carlo Simulation Of Millimeter-Wave Gunn Effect Oscillators, Ramani Vaidyanathan
Monte Carlo Simulation Of Millimeter-Wave Gunn Effect Oscillators, Ramani Vaidyanathan
Electrical & Computer Engineering Theses & Dissertations
Monte Carlo simulations have been carried out to investigate the performance of microwave Gunn oscillators. Three separate aspects of the simulation problem have been comprehensively addressed in this work. First, the presence of an external circuit has been self-consistently incorporated into the calculations. The inclusion of the external circuit facilitates a study of the circuit controlled regime, and correctly models effects arising from the time dependent boundary conditions. Secondly, microscopic details of the electronic relaxation mechanisms which ultimately control the frequency response limits, have been taken into account through an iterative Monte Carlo-Poisson scheme. This procedure overcomes a potential shortcoming …
Angle Of Arrival Detection Through Artificial Neural Network Analysis Of Optical Fiber Intensity Patterns, Scott Thomas
Angle Of Arrival Detection Through Artificial Neural Network Analysis Of Optical Fiber Intensity Patterns, Scott Thomas
Theses and Dissertations
The optical sensors of United States Air Force reconnaissance vehicles, such as satellites, are subject to temporary or permanent blinding from hostile (or threat) laser radiation. By detecting and determining the angle of arrival (AOA) of the hostile radiation, the reconnaissance vehicle may be able to protect its optical sensors by taking evasive maneuvers or by shutting down the optical sensor (such as closing a shutter) until the threat has passed. In addition, the vehicle can relay information to its ground terminal allowing the intelligence community to determine the source of the hostile laser radiation. This thesis demonstrated that an …
Optical And High Electric Field Effects In Bulk Gallium Arsenide Switches, Randy Roush
Optical And High Electric Field Effects In Bulk Gallium Arsenide Switches, Randy Roush
Electrical & Computer Engineering Theses & Dissertations
During the past few years, bulk, photoconductive switching has become recognized as a viable topic for future research on moderate and high power switches. The two-pulse, or BOSS, concept relies on an excitation laser pulse, and a separate de-excitation pulse in conjunction with silicon doped, copper compensated, GaAs to create a variable temporal electrical pulse width. The research contained in this document provides information concerning the feasibility of the BOSS concept, as the switch is scaled to larger sizes, and higher voltage and current. The major concern will be the high voltage and current effects. The absorption length for 1064 …
Influence Of Copper Doping On The Performance Of Optically Controlled Gaas Switches, St. T. Ko, V. K. Lakdawala, K. H. Schoenbach, M. S. Mazzola
Influence Of Copper Doping On The Performance Of Optically Controlled Gaas Switches, St. T. Ko, V. K. Lakdawala, K. H. Schoenbach, M. S. Mazzola
Electrical & Computer Engineering Faculty Publications
The influence of the copper concentration in silicon-doped gallium arsenide on the photoionization and photoquenching of charge carriers was studied both experimentally and theoretically. The studies indicate that the compensation ratio (NCu/NSi) is an important parameter for the GaAs:Si:Cu switch systems with regard to the turn-on and turn-off performance. The optimum copper concentration for the use of GaAs:Si:Cu as an optically controlled closing and opening switch is determined.
Gaas Photoconductive Closing Switches With High Dark Resistance And Microsecond Conductivity Decay, M. S. Mazzola, K. H. Schoenbach, V. K. Lakdawala, R. Germer, G. M. Loubriel, F. J. Zutavern
Gaas Photoconductive Closing Switches With High Dark Resistance And Microsecond Conductivity Decay, M. S. Mazzola, K. H. Schoenbach, V. K. Lakdawala, R. Germer, G. M. Loubriel, F. J. Zutavern
Electrical & Computer Engineering Faculty Publications
Silicon-doped n-type gallium arsenide crystals, compensated with diffused copper, were studied with respect to their application as photoconductive, high-power closing switches. The attractive features of GaAs:Cu switches are their high dark resistivity, their efficient activation with Nd:YAG laser radiation, and their microsecond conductivity decay time constant. In the authors' experiment, electric fields are high as 19 kV/cm were switched, and current densities of up to 10 kA/cm2 were conducted through a closely compensated crystal. At field strengths greater than approximately 10 kV/cm, a voltage `lock-on' effect was observed.
Nanosecond Optical Quenching Of Photoconductivity In A Bulk Gaas Switch, M. S. Mazzola, K. H. Schoenbach, V. K. Lakdawala, S. T. Ko
Nanosecond Optical Quenching Of Photoconductivity In A Bulk Gaas Switch, M. S. Mazzola, K. H. Schoenbach, V. K. Lakdawala, S. T. Ko
Electrical & Computer Engineering Faculty Publications
Persistent photoconductivity in copper-compensated, silicon-doped semi-insulating gallium arsenide with a time constant as large as 30 µs has been excited by sub-band-gap laser radiation of photon energy greater than 1 eV. This photoconductivity has been quenched on a nanosecond time scale by laser radiation of photon energy less than 1 eV. The proven ability to turn the switch conductance on and off on command, and to scale the switch to high power could make this semiconductor material the basis of an optically controlled pulsed-power closing and opening switch.
An Optically Controlled Closing And Opening Semiconductor Switch, K. H. Schoenbach, V. K. Lakdawala, R. Germer, S. T. Ko
An Optically Controlled Closing And Opening Semiconductor Switch, K. H. Schoenbach, V. K. Lakdawala, R. Germer, S. T. Ko
Electrical & Computer Engineering Faculty Publications
A concept for a bulk semiconductor switch is presented, where the conductivity is increased and reduced, respectively, through illumination with light of different wavelengths. The increase in conductivity is accomplished by electron ionization from deep centers and generation of bound holes. The reduction of conductivity is obtained by hole ionization from the excited centers and subsequent recombination of free electrons and holes. The transient behavior of electron and hole density in a high power semiconductor (GaAs:Cu) switch is computed by means of a rate equation model. Changes in conductivity by five orders of magnitude can be obtained.