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Full-Text Articles in Physics
The Structure And Ferroelectric Properties Of Iron-Doped Lead Titanate, Michael Bartlein
The Structure And Ferroelectric Properties Of Iron-Doped Lead Titanate, Michael Bartlein
Theses and Dissertations
Multiferroics are a class of poorly understood, but technologically important materials. Lead(II) titanate (PbTiO$_3$) is a known perovskite ferroelectric. By doping PbTiO$_3$ with Fe$^{3+}$ at the Ti site, we produce the multiferroic PbTi$_{1-x}$Fe$_x$O$_3$ (PTFO). Using selected area electron diffraction on a transmission electron microscope, the structure of PTFO is investigated. Of particular interest is identifying the cubic-to-tetragonal transition at the Curie temperature. As the concentration of Fe increases, the crystal becomes more cubic and experiences a lower transition temperature. I also establish a procedure for preparing bulk PTFO samples for ferroelectric testing and present preliminary results establishing ferroelectricity in these …
Propagation Of An Optical Vortex In Fiber Arrays With Triangular Lattices, Muhammad Abdulrahman Mushref
Propagation Of An Optical Vortex In Fiber Arrays With Triangular Lattices, Muhammad Abdulrahman Mushref
Theses and Dissertations
The propagation of optical vortices (OVs) in linear and nonlinear media is an important field of research in science and engineering. The most important goal is to explore the properties of guiding dynamics for potential applications such as sensing, all-optical switching, frequency mixing and modulation. In this dissertation, we present analytical methods and numerical techniques to investigate the propagation of an optical vortex in fiber array waveguides. Analytically, we model wave propagation in a waveguide by coupled mode Equations as a simplified approximation. The beam propagation method (BPM) is also employed to numerically solve the paraxial wave Equation by finite …
Design Of A Micro-Focus X-Ray Source Validated By Model Protein Crystals, Lavanya Ramachandran
Design Of A Micro-Focus X-Ray Source Validated By Model Protein Crystals, Lavanya Ramachandran
Theses and Dissertations
The main objective of this thesis was to build a Laboratory Microfocus X-ray Source for Protein Crystallography (LMXS-PC), an X-ray source that would provide prospective users programmatic control and remote capability.
A study of the crystal was conducted using Photoactive Yellow protein (PYP) and cytochrome c nitrite reductase (ccNiR). The instrument was then tested by mounting the crystal in the instrument and collecting data.
The other objective of my research work was to determine the crystal structure of PYP using X-ray crystallography techniques. I attempted many trials in PYP crystal in an effort to achieve a high-quality diffraction pattern; however, …
Monitoring Changes In Hemodynamics Following Optogenetic Stimulation, Seth Thomas Frye
Monitoring Changes In Hemodynamics Following Optogenetic Stimulation, Seth Thomas Frye
Theses and Dissertations
The brain is composed of billions of neurons, all of which connected through a vast network. After years of study and applications of different technologies and techniques, there are still more questions than answers when it comes to the fundamental functions of the brain. This project aims to provide a new tool which can be used to gain a better understanding of the fundamental mechanisms that govern neurological processes inside the brain. In order for neural networks to operate, blood has to be supplied through neighboring blood vessels. As such, the increase or decrease in the blood supply has been …
Nonlinear Processes In Multi-Mode Optical Fibers, Hamed Pourbeyram Kaleibar
Nonlinear Processes In Multi-Mode Optical Fibers, Hamed Pourbeyram Kaleibar
Theses and Dissertations
Nonlinear processes in optical fibers can affect data transmission and power carried by
optical fibers and can limit the bandwidth and the capacity of optical communications.
On the other hand nonlinear phenomena could be utilized to build in-fiber all-optical
light sources and amplifiers. In this thesis new peaks inside an optical fiber have been
generated using nonlinear processes. An intense green pump laser has been launched
into a short fiber and specific modes have been excited to generate two new peaks in
red and blue wavelengths, where two pump photons are annihilated to create two new
photons in red and …