Open Access. Powered by Scholars. Published by Universities.®
Electromagnetics and Photonics Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Physical Sciences and Mathematics (33)
- Physics (32)
- Optics (28)
- Other Electrical and Computer Engineering (9)
- Electrical and Electronics (8)
-
- Materials Science and Engineering (6)
- Nanotechnology Fabrication (5)
- Semiconductor and Optical Materials (5)
- Electronic Devices and Semiconductor Manufacturing (4)
- Nanoscience and Nanotechnology (3)
- Other Physics (3)
- Signal Processing (3)
- Systems and Communications (3)
- Biomedical Engineering and Bioengineering (2)
- Computer Engineering (2)
- Engineering Physics (2)
- Power and Energy (2)
- Acoustics, Dynamics, and Controls (1)
- Aerospace Engineering (1)
- Applied Mathematics (1)
- Astrophysics and Astronomy (1)
- Bioelectrical and Neuroengineering (1)
- Bioimaging and Biomedical Optics (1)
- Biomedical (1)
- Biomedical Devices and Instrumentation (1)
- Chemistry (1)
- Civil Engineering (1)
- Institution
-
- University of Central Florida (16)
- University of Dayton (9)
- University of Arkansas, Fayetteville (6)
- Missouri University of Science and Technology (5)
- University of South Florida (5)
-
- Michigan Technological University (3)
- University of Nebraska - Lincoln (3)
- California Polytechnic State University, San Luis Obispo (2)
- University of Kentucky (2)
- Air Force Institute of Technology (1)
- City University of New York (CUNY) (1)
- Embry-Riddle Aeronautical University (1)
- Georgia Southern University (1)
- Kennesaw State University (1)
- Montana Tech Library (1)
- Purdue University (1)
- San Jose State University (1)
- South Dakota State University (1)
- Southern Methodist University (1)
- The British University in Egypt (1)
- University of Alabama in Huntsville (1)
- University of Nevada, Las Vegas (1)
- University of New Mexico (1)
- Virginia Commonwealth University (1)
- Keyword
-
- Simulation (3)
- 3-D printing (2)
- Anisoplanatic (2)
- Atmospheric turbulence (2)
- GeSn (2)
-
- Metamaterial (2)
- Microwave (2)
- Optical wave propagation (2)
- 3-dB bandwidth modulation (1)
- AEFIEnH-S (1)
- Acoustic emission (1)
- Additive manufacturing (1)
- Additive manufacturing (AM) (1)
- Advanced Propulsion (1)
- Adversarial Example (1)
- Anharmonicity (1)
- Anisoplanatism (1)
- Anisotropy (1)
- Antennas (1)
- Aperture coupled (1)
- Applied sciences (1)
- Array (1)
- Atmospheric turbulence mitigation (1)
- Autofocus (1)
- BIPV (1)
- Balance of systems (1)
- Balance of systems (BOS) (1)
- Bath Tub Curves (1)
- BeMgZnO (1)
- Beam Steer (1)
- Publication
-
- Electronic Theses and Dissertations (17)
- Electrical and Computer Engineering Faculty Publications (6)
- Graduate Theses and Dissertations (5)
- USF Tampa Graduate Theses and Dissertations (5)
- Department of Electrical and Computer Engineering: Dissertations, Theses, and Student Research (3)
-
- Doctoral Dissertations (3)
- Electro-Optics and Photonics Faculty Publications (3)
- Dissertations, Master's Theses and Master's Reports (2)
- Electrical Engineering (2)
- Faculty Publications (2)
- Masters Theses (2)
- Theses and Dissertations--Electrical and Computer Engineering (2)
- College of Graduate Studies: Theses & Dissertations (1)
- Department of Materials Science and Engineering Publications (1)
- Dissertations and Theses (1)
- Doctoral Dissertations and Master's Theses (1)
- Electrical Engineering Theses and Dissertations (1)
- Electrical Engineering Undergraduate Honors Theses (1)
- Graduate Theses & Non-Theses (1)
- KSU Journey Honors College Capstones and Theses (1)
- Master's Theses (1)
- Physics & Astronomy ETDs (1)
- The Summer Undergraduate Research Fellowship (SURF) Symposium (1)
- Theses and Dissertations (1)
- UNLV Theses, Dissertations, Professional Papers, and Capstones (1)
- Von Braun Symposium Student Posters (1)
- Publication Type
Articles 31 - 60 of 66
Full-Text Articles in Electromagnetics and Photonics
Smart Feedback Control For Fiber-Optics Acoustic Emission Sensor System, Xiangyu Luo
Smart Feedback Control For Fiber-Optics Acoustic Emission Sensor System, Xiangyu Luo
Department of Electrical and Computer Engineering: Dissertations, Theses, and Student Research
Optical fiber sensors for ultrasonic detection have become a subject of much research in recent years. In this thesis, a fiber-optic acoustic emission (AE) sensor system that is capable of performing AE detection, even when the sensor is experiencing large quasi-static strains, is first described. The system consists of a smart selection of a wavelength notch to which a distributed feedback (DFB) laser is locked for high sensitivity AE signal demodulation. A smart feedback control unit for the DFB laser, which is the focus of this thesis, is designed and investigated. The smart control ensures that the AE signal is …
Novel Methods For The Time-Dependent Maxwell’S Equations And Their Applications, Sidney Shields
Novel Methods For The Time-Dependent Maxwell’S Equations And Their Applications, Sidney Shields
UNLV Theses, Dissertations, Professional Papers, and Capstones
This dissertation investigates three different mathematical models based on the time domain Maxwell's equations using three different numerical methods: a Yee scheme using a non-uniform grid, a nodal discontinuous Galerkin (nDG) method, and a newly developed discontinuous Galerkin method named the weak Galerkin (WG) method. The non-uniform Yee scheme is first applied to an electromagnetic metamaterial model. Stability and superconvergence error results are proved for the method, which are then confirmed through numerical results. Additionally, a numerical simulation of backwards wave propagation through a negative-index metamaterial is given using the presented method. Next, the nDG method is used to simulate …
Rural Broadband Mobile Communications: Spectrum Occupancy And Propagation Modeling In Western Montana, Erin Wiles
Rural Broadband Mobile Communications: Spectrum Occupancy And Propagation Modeling In Western Montana, Erin Wiles
Graduate Theses & Non-Theses
Fixed and mobile spectrum monitoring stations were implemented to study the spectrum range from 174 to 1000 MHz in rural and remote locations within the mountains of western Montana, USA. The measurements show that the majority of this spectrum range is underused and suitable for spectrum sharing. This work identifies available channels of 5-MHz bandwidth to test a remote mobile broadband network. Both TV broadcast stations and a cellular base station were modelled to test signal propagation and interference scenarios.
Engineered Nanocomposite Materials For Microwave/Millimeter-Wave Applications Of Fused Deposition Modeling, Juan De Dios Castro
Engineered Nanocomposite Materials For Microwave/Millimeter-Wave Applications Of Fused Deposition Modeling, Juan De Dios Castro
USF Tampa Graduate Theses and Dissertations
A variety of high-permittivity (high-k) and low-loss ceramic-thermoplastic composite materials as fused deposition modeling (FDM) feedstock, based on cyclo-olefin polymer (COP) embedded with sintered ceramic fillers, have been developed and investigated for direct digital manufacturing (DDM) of microwave components. The composites presented in this dissertation use a high-temperature sintering process up to 1500°C to further enhance the dielectric properties of the ceramic fillers. The electromagnetic (EM) properties of these newly developed FDM composites were characterized up to the Ku-band by using the cavity perturbation technique. Several models for prediction of the effective relative dielectric permittivity of composites based …
Block Matching And Wiener Filtering Approach To Optical Turbulence Mitigation And Its Application To Simulated And Real Imagery With Quantitative Error Analysis, Russell C. Hardie, Michael Armand Rucci, Barry K. Karch, Alexander J. Dapore
Block Matching And Wiener Filtering Approach To Optical Turbulence Mitigation And Its Application To Simulated And Real Imagery With Quantitative Error Analysis, Russell C. Hardie, Michael Armand Rucci, Barry K. Karch, Alexander J. Dapore
Electrical and Computer Engineering Faculty Publications
We present a block-matching and Wiener filtering approach to atmospheric turbulence mitigation for long-range imaging of extended scenes. We evaluate the proposed method, along with some benchmark methods, using simulated and real-image sequences. The simulated data are generated with a simulation tool developed by one of the authors. These data provide objective truth and allow for quantitative error analysis. The proposed turbulence mitigation method takes a sequence of short-exposure frames of a static scene and outputs a single restored image. A block-matching registration algorithm is used to provide geometric correction for each of the individual input frames. The registered frames …
Simulation Of Anisoplanatic Imaging Through Optical Turbulence Using Numerical Wave Propagation With New Validation Analysis, Russell C. Hardie, Jonathan D. Power, Daniel A. Lemaster, Douglas R. Droege, Szymon Gladysz, Santasri Bose-Pillai
Simulation Of Anisoplanatic Imaging Through Optical Turbulence Using Numerical Wave Propagation With New Validation Analysis, Russell C. Hardie, Jonathan D. Power, Daniel A. Lemaster, Douglas R. Droege, Szymon Gladysz, Santasri Bose-Pillai
Electrical and Computer Engineering Faculty Publications
We present a numerical wave propagation method for simulating imaging of an extended scene under anisoplanatic conditions. While isoplanatic simulation is relatively common, few tools are specifically designed for simulating the imaging of extended scenes under anisoplanatic conditions. We provide a complete description of the proposed simulation tool, including the wave propagation method used. Our approach computes an array of point spread functions (PSFs) for a two-dimensional grid on the object plane. The PSFs are then used in a spatially varying weighted sum operation, with an ideal image, to produce a simulated image with realistic optical turbulence degradation. The degradation …
Three-Dimensional Beam Scan Using Ferrite-Loaded Circular Waveguide Antenna, Hassan Ali Ragheb, Ahmed Elgarni, Essam Hassan, Eqbal Mitu
Three-Dimensional Beam Scan Using Ferrite-Loaded Circular Waveguide Antenna, Hassan Ali Ragheb, Ahmed Elgarni, Essam Hassan, Eqbal Mitu
Electrical Engineering
Phased or parasitic array antennas with complex feed mechanism are widely used to realize beam scanning. This paper presents a simple magnetized ferrite loaded circular waveguide antenna with three dimensional (3D) scan characteristics. Professional software is used to optimize the dimension and biasing requirement of the antenna. The required magnetizing fields (H 0 ) are tabulated to realize 60° of maximum beam scan in elevation plane for eight different azimuth regions covering 360°. A prototype of the high power waveguide antenna is fabricated to experimentally verify some of the simulated scan characteristics. Using LTCC technique, embedding the biasing coils within …
Engineering Of Photo-Rechargeable Energy Storage, Ashim Gurung
Engineering Of Photo-Rechargeable Energy Storage, Ashim Gurung
Electronic Theses and Dissertations
Solar photovoltaics (PV) is a very promising renewable energy technologies as it is abundant and pollution-free. However, the major drawback of PV power is its intermittency. Integration of batteries with solar modules can reduce overall PV system costs and increase the practicality of PV power. Integration of the photovoltaic cells with supercapacitor storage proved feasibility of combined photovoltaic energy generation and storage but the supercapacitors had low energy storage capacity. Photovoltaic cells with integrated Li-ion batteries as energy storage were demonstrated but had a complex structure due to multiple PV cells; low efficiency due to a mismatch between the PV …
Study And Implementation Of Wideband Bow-Tie Antennas, Md Rakibul Islam
Study And Implementation Of Wideband Bow-Tie Antennas, Md Rakibul Islam
College of Graduate Studies: Theses & Dissertations
Demand for multifunctional electronic devices is increasing in modern wireless communication systems. As the antenna plays a vital role in wireless communication, the need to design antennas which will provide better performance and more reliable communication is growing. In this thesis, innovative designs for antennas with wideband characteristic have been proposed to meet the demands of current multi-functional wireless communication systems. First, this thesis explores the design of a wideband pattern reconfigurable antenna with steady realized gain over the operating bandwidth. Another novel design of this thesis work is a highly directive wideband Yagi antenna. Finally, a two-planar structured CPLPDA …
Design Of A Hydrogen-Filled Hollow-Core Fiber Raman Laser, Yangyang Qin
Design Of A Hydrogen-Filled Hollow-Core Fiber Raman Laser, Yangyang Qin
Electronic Theses and Dissertations
The purpose of this study is to investigate the design of a Raman fiber laser based on a molecule hydrogen-filled hollow-core fiber with non-touching single ring of capillaries structure. O-hydrogen vibrational frequency shift of 4155 cm-1 and rotational frequency shift of 587 cm-1 were employed to generate Raman scattering from a 1064nm pump source. A thorough exploration was made to show how all Raman fiber laser components made up: gas chamber, hollow-core fibers, windows. The whole process of chamber design, modification and fabrication were demonstrated. Besides, two kinds of anti-resonant hollow-core fibers were studied and tested. The transmission and loss …
Enhancement Of Bandwidth And Laser Deflection Angle Of Acousto-Optic Deflectors By Dynamic Two-Dimensional Refractive Index Modulation, Tiansi Wang
Electronic Theses and Dissertations
Acousto-Optic Deflectors (AODs) are inertialess optical solid state devices that have advantages over conventional mechanically controlled mirror-based deflectors in numerous scientific and industrial applications. These applications include fluorescence microscopy, sensing, variable-focus lens, photolithography and laser materials processing. AODs are currently operated with a single piezoelectric transducer that modulates the refractive index only in one direction. This operating principle limits the performance of AODs to a narrow acoustic bandwidth of the transducer and a small angle of laser deflection governed by the Bragg diffraction. To overcome these two limitations, the operation of AODs with phased array ultrasonic transducers is analyzed in …
Noise, Stability, And Linewidth Performance Of 10-Ghz Optical Frequency Combs Generated From The Nested Cavity Architecture, Kristina Bagnell
Noise, Stability, And Linewidth Performance Of 10-Ghz Optical Frequency Combs Generated From The Nested Cavity Architecture, Kristina Bagnell
Electronic Theses and Dissertations
Optical frequency combs with wide mode spacing and low timing jitter are relied upon for both time domain and frequency domain applications. It has been previously demonstrated that surrounding a low-Q semiconductor laser chip with a long external fiber cavity and inserting a high finesse Fabry–Pérot etalon into this cavity can produce a mode-locked laser with the desired high repetition rate and narrow optical mode linewidths which are of benefit to applications like photonic analog-to-digital conversion and astronomical spectrograph calibration. With this nested cavity architecture, the quality factor of the resonator is effectively determined by the product of the individual …
High Dynamic Range Display Systems, Ruidong Zhu
High Dynamic Range Display Systems, Ruidong Zhu
Electronic Theses and Dissertations
High contrast ratio (CR) enables a display system to faithfully reproduce the real objects. However, achieving high contrast, especially high ambient contrast (ACR), is a challenging task. In this dissertation, two display systems with high CR are discussed: high ACR augmented reality (AR) display and high dynamic range (HDR) display. For an AR display, we improved its ACR by incorporating a tunable transmittance liquid crystal (LC) film. The film has high tunable transmittance range, fast response time, and is fail-safe. To reduce the weight and size of a display system, we proposed a functional reflective polarizer, which can also help …
Harnessing Spatial Intensity Fluctuations For Optical Imaging And Sensing, Milad Akhlaghi Bouzan
Harnessing Spatial Intensity Fluctuations For Optical Imaging And Sensing, Milad Akhlaghi Bouzan
Electronic Theses and Dissertations
Properties of light such as amplitude and phase, temporal and spatial coherence, polarization, etc. are abundantly used for sensing and imaging. Regardless of the passive or active nature of the sensing method, optical intensity fluctuations are always present! While these fluctuations are usually regarded as noise, there are situations where one can harness the intensity fluctuations to enhance certain attributes of the sensing procedure. In this thesis, we developed different sensing methodologies that use statistical properties of optical fluctuations for gauging specific information. We examine this concept in the context of three different aspects of computational optical imaging and sensing. …
Generating Fast And Accurate Compliance Reports For Various Data Rates, Srinath Penugonda
Generating Fast And Accurate Compliance Reports For Various Data Rates, Srinath Penugonda
Masters Theses
"As the demands on the industry data rates have increased there is a need for interoperable interfaces to function flawlessly. Added to this complexity, the number of I/O data lines are also increasing making it more time consuming to design and test. This in general leads to creating of compliance standards to which interfaces must adhere. The goal of this theses is to aid the Signal Integrity Engineers with a better and fast way of rendering a full picture of the interface compliance parameters.
Three different interfaces at various data rates were chosen. They are: 25Gbps Very Short Reach (VSR) …
A Physics-Based Approach For Power Integrity In Multi-Layered Pcbs, Biyao Zhao
A Physics-Based Approach For Power Integrity In Multi-Layered Pcbs, Biyao Zhao
Masters Theses
"Developing a power distribution network (PDN) for ASICs and ICs to achieve the low-voltage ripple specifications for current digital designs is challenging with the high-speed and low-voltage ICs. Present methods are typically guided by best engineering practices for low impedance looking into the PDN from the IC. A pre-layout design methodology for power integrity in multi-layered PCB PDN geometry is proposed in the thesis. The PCB PDN geometry is segmented into four parts and every part is modelled using different methods based on the geometry details of the part. Physics-based circuit models are built for every part and the four …
Polymer Waveguide Manufacturing And Printed Circuit Board Integration, Brandon Swatowski
Polymer Waveguide Manufacturing And Printed Circuit Board Integration, Brandon Swatowski
Dissertations, Master's Theses and Master's Reports
In this age of ever increasing data rates in communication systems, optics are becoming more commonplace for long length (>10m) signal transmission in High Performance Computing (HPC) systems due to their bandwidth capabilities which are higher than their electrical counterparts. In these optical based communication systems, Vertical Cavity Surface Emitting Lasers (VCSELs) are the most commonly used communications lasing medium for multimode fiber applications. These lasers are active in the 850 nm region, with speeds commonly at 10 Gbps/channel. VCSEL vendors are now commercializing lasers at 25 Gbps/channel as well, with research groups actively pursuing rates beyond 40 Gbps/channel, …
Advanced Liquid Crystal Displays With Supreme Image Qualities, Haiwei Chen
Advanced Liquid Crystal Displays With Supreme Image Qualities, Haiwei Chen
Electronic Theses and Dissertations
Several metrics are commonly used to evaluate the performance of display devices. In this dissertation, we analyze three key parameters: fast response time, wide color gamut, and high contrast ratio, which affect the final perceived image quality. Firstly, we investigate how response time affects the motion blur, and then discover the 2-ms rule. With advanced low-viscosity materials, new operation modes, and backlight modulation technique, liquid crystal displays (LCDs) with an unnoticeable image blur can be realized. Its performance is comparable to an impulse-type display, like cathode ray tube (CRT). Next, we propose two novel backlight configurations to improve an LCD's …
Enhanced Ablation By Femtosecond And Nanoseond Pulses, Haley Kerrigan
Enhanced Ablation By Femtosecond And Nanoseond Pulses, Haley Kerrigan
Electronic Theses and Dissertations
Laser ablation of GaAs by a combination of femtosecond and nanosecond pulses is investigated as a means of enhancing material removal by a femtosecond pulse in the filamentation intensity regime. We demonstrate for the first time increased ablation of GaAs by ultrafast laser pulse plasmas augmented by nanosecond pulse radiation from a secondary laser. Material removal during laser ablation is a complex process that occurs via multiple mechanisms over several timescales. Due to different pulse durations, ablation by femtosecond and nanosecond pulses are dominated by different mechanisms. Ablation can be enhanced by optimally combining a femtosecond and nanosecond pulse in …
Laser-Induced Crystallization Mechanisms In Chalcogenide Glass Materials For Advanced Optical Functionality, Laura Sisken
Laser-Induced Crystallization Mechanisms In Chalcogenide Glass Materials For Advanced Optical Functionality, Laura Sisken
Electronic Theses and Dissertations
Glass-ceramics (GC) are promising candidates for gradient refractive index (GRIN) optics. These multi-phase, composite materials also exhibit improved physical properties as compared to the parent base glass resulting from the formation of a secondary crystalline phase(s). Nanocrystal phase formation in a multi-component chalcogenide glass (ChG), (GeSe2-3As2Se3)(1-x)-(PbSe)x glass where x = 0-40 has been investigated, and the role of the starting material morphology has been correlated to the resulting composite's optical properties including refractive index, transmission, dispersion, and thermo-optic coefficient. Optical property evolution was related to the type and amount of the crystal phases formed, since through control of the local …
Sparse Direct Solution Methods For Capacitive Extraction Problems On Closely-Spaced Geometries With High Aspect Ratios, Chee Kean Chang
Sparse Direct Solution Methods For Capacitive Extraction Problems On Closely-Spaced Geometries With High Aspect Ratios, Chee Kean Chang
Theses and Dissertations--Electrical and Computer Engineering
The method of moment (MoM) [1] is a widely used method in electromagnetics to solve static and dynamic electromagnetic problems on varying geometries. However, in closely spaced geometries coupled with large aspect ratios, e.g. a large parallel plate capacitor with very small separation gap, the problem exhibits several challenges. Firstly, the close proximity of the field and source elements presents problems with convergence in numerical evaluations of the interactions between them. Secondly, the aspect ratio of the geometry gives an approximation whereby to far field points, the source contributions from locations that are far apart appear to cancel each other. …
Hybrid Parallelization Of The Nasa Gemini Electromagnetic Modeling Tool, Buxton L. Johnson Sr.
Hybrid Parallelization Of The Nasa Gemini Electromagnetic Modeling Tool, Buxton L. Johnson Sr.
Theses and Dissertations--Electrical and Computer Engineering
Understanding, predicting, and controlling electromagnetic field interactions on and between complex RF platforms requires high fidelity computational electromagnetic (CEM) simulation. The primary CEM tool within NASA is GEMINI, an integral equation based method-of-moments (MoM) code for frequency domain electromagnetic modeling. However, GEMINI is currently limited in the size and complexity of problems that can be effectively handled. To extend GEMINI’S CEM capabilities beyond those currently available, primary research is devoted to integrating the MFDlib library developed at the University of Kentucky with GEMINI for efficient filling, factorization, and solution of large electromagnetic problems formulated using integral equation methods. A secondary …
Understanding Adversarial Training: Improve Image Recognition Accuracy Of Convolution Neural Network, Naoki Ishibashi
Understanding Adversarial Training: Improve Image Recognition Accuracy Of Convolution Neural Network, Naoki Ishibashi
Dissertations and Theses
Traditional methods of computer vision and machine learning cannot match human performance on tasks such as the recognition of handwritten digits. Recently many researchers work on Convolution Neural Network for image recognition, and get results as good as human being. Additionally, Image recognition task is getting more popular and high demand to apply to other fields, but also there are still many problems to utilize in everyday life. One of these problems is that several machine learning models, including neural networks, consistently misclassify adversarial examples—inputs formed by applying small but intentionally worst-case perturbations to examples from the dataset, such that …
Mode Evolution In Fiber Based Devices For Optical Communication Systems, Bin Huang
Mode Evolution In Fiber Based Devices For Optical Communication Systems, Bin Huang
Electronic Theses and Dissertations
Space division multiplexing (SDM) is the most promising way of increasing the capacity of a single fiber. To enable the few mode fiber (FMF) or multi-mode fiber (MMF) transmission system, several major challenges have to be overcome. One is the urgent need of ideal mode multiplexer, the second is the perfect amplification for all spatial modes, another one is the modal delay spread (MDS) due to group velocity difference of spatial modes. The main subject of this dissertation is to model, fabricate and characterize the mode multiplexer for FMF transmission. First, we designed a novel resonant mode coupler (structured directional …
Thermal And Waveguide Optimization Of Broad Area Quantum Cascade Laser Performance, Matthew Suttinger
Thermal And Waveguide Optimization Of Broad Area Quantum Cascade Laser Performance, Matthew Suttinger
Electronic Theses and Dissertations
Quantum Cascade Lasers are a novel source of coherent infrared light, unique in their tunability over the mid-infrared and terahertz range of frequencies. Advances in bandgap engineering and semiconductor processing techniques in recent years have led to the development of highly efficient quantum cascade lasers capable of room temperature operation. Recent work has demonstrated power scaling with broad area quantum cascade lasers by increasing active region width beyond the standard ~10 ?m. Taking into account thermal effects caused by driving a device with electrical power, an experimentally fitted model is developed to predict the optical power output in both pulsed …
System For Metal Coated Fiber Fabrication, Da Zhang
System For Metal Coated Fiber Fabrication, Da Zhang
Electronic Theses and Dissertations
For many specific applications, such as sensors, aerospace, chemical industry, deep-well oil-field industry, metal-coated fiber shows strong abilities to satisfy people's requirement. With in-line coating technology, we are able to coat Aluminum on the fibers. Using electromagnetic induction, we can easily heat an electrically conducting thing such as a metal with the eddy current. This process is defined as Induction heating. And we will melt the Aluminum by this induction heating during drawing the fibers on the tower. Introduce the fiber tower system. The drawing process of in-line technology is formed of the following steps: Position, Melting, Forming into fibers, …
Picosecond Yb-Doped Fiber Amplifier, Weibin Zhu
Picosecond Yb-Doped Fiber Amplifier, Weibin Zhu
Electronic Theses and Dissertations
Due to its versatility, rare earth doped fiber amplifier (RDFA) has attracted a lot of researchers worldwide in recent years. Depends on different kinds of rare earth ion, RDFA can be categorized into neodymium doped fiber amplifier (NDFA), erbium doped fiber amplifier (EDFA), thulium doped fiber amplifier (TDFA), and so forth. Among many kinds of RDFA, the ytterbium doped fiber amplifier (YDFA) has received even more interest, especially in high power application, mainly because of its broad gain bandwidth and high conversion efficiency which are due to its relatively simple electronic structure. The purpose of this research is to study …
Photothermal Lensing In Mid-Infrared Materials, Justin Cook
Photothermal Lensing In Mid-Infrared Materials, Justin Cook
Electronic Theses and Dissertations
A thorough understanding of laser-materials interactions is crucial when designing and building optical systems. An ideal test method would probe both the thermal and optical properties simultaneously for materials under large optical loads where detrimental thermal effects emerge. An interesting class of materials are those used for infrared wavelengths due to their wide spectral transmission windows and large optical nonlinearities. Since coherent sources spanning the mid-wave and long-wave infrared wavelength regions have only become widely available in the past decade, data regarding their thermal and optical responses is lacking in literature. Photothermal Lensing (PTL) technique is an attractive method for …
Filament Wavefront Evolution, Daniel Thul
Filament Wavefront Evolution, Daniel Thul
Electronic Theses and Dissertations
Filamentation is a complex process that gives rise to many nonlinear interactions. However, the fundamentals of filament formation and propagation can be explained in terms of two dominant mechanisms: Kerr self-focusing and plasma defocusing. The first to occur, self-focusing, is responsible for an increase in irradiance through beam collapse. This process requires sufficient initial peak power, on the order of gigawatts for near infrared beams in air. Plasma defocusing then arrests the collapse process once the irradiance reaches the ionization threshold of the medium. These two processes balance each other in an extended plasma channel known as a filament. A …
Novel Photonic Resonance Arrangements Using Non-Hermitian Exceptional Points, Hossein Hodaei
Novel Photonic Resonance Arrangements Using Non-Hermitian Exceptional Points, Hossein Hodaei
Electronic Theses and Dissertations
In recent years, non-Hermitian degeneracies also known as exceptional points (EPs) have emerged as a new paradigm for engineering the response of optical systems. EPs can appear in a wide class of open non-Hermitian configurations. Among different types of non-conservative photonic systems, parity-time (PT) symmetric arrangements are of particular interest since they provide an excellent platform to explore the physics of exceptional points. In this work, the intriguing properties of exceptional points are utilized to address two of the long standing challenges in the field of integrated photonics- enforcing single mode lasing in intrinsically multimode cavities and enhancing the sensitivity …