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Articles 61 - 90 of 1948
Full-Text Articles in Entire DC Network
Studying The Effect Of Some Additives To The Borosilicate Glass On The Neutron Shielding Properties, Saddam Jamel Abd-Noor, Ahmed Fadhil Mkhaiber
Studying The Effect Of Some Additives To The Borosilicate Glass On The Neutron Shielding Properties, Saddam Jamel Abd-Noor, Ahmed Fadhil Mkhaiber
Baghdad Science Journal
The development of radiation shielding material is important since radioactive sources are used in industry, medicine, and agriculture. As a result, more research and development has been put into looking into different glass systems based on their unique qualities for protecting against neutron radiation. This study focuses on investigating glass-based materials for neutron shielding purposes. This investigation delves into the neutron shielding properties of a mixture comprising Sodium Aluminum borosilicate glass (SiB2Na2Al2O9)X, with added reinforcement materials (SiC)100-X, (TiB2)100-X, and (BiClO)100-X (X = 95, …
A Novel Approach To Model The Pion Structure Using Advanced Polynomial Functions, Lucas Kotz
A Novel Approach To Model The Pion Structure Using Advanced Polynomial Functions, Lucas Kotz
Physics Theses and Dissertations
In the coming years, new experiments at the Electron-Ion Collider (EIC) and the Large Hadron Collider (LHC) will provide unprecedented insight into the building blocks of matter. To make the most of these opportunities, scientists must reduce uncertainties in the theoretical models that connect what we observe in experiments to what is happening inside particles like protons and pions. A critical part of these models involves describing how a particles momentum is shared among its internal components – quarks and gluons.
This work focuses on improving how we model the internal structure of the pion. We propose a new approach …
Simulating 3d Humanoid Ragdoll Physics Using Velocity Verlet Integration, Pin Constraints, And Rigid Body Collision Systems, Son D. Nguyen
Simulating 3d Humanoid Ragdoll Physics Using Velocity Verlet Integration, Pin Constraints, And Rigid Body Collision Systems, Son D. Nguyen
Programming Theses and Dissertations
Ragdoll physics simulates realistic character collapse with physical realism by responding to environmental forces rather than using predefined animations.
Noise-Embedded Image Processing Based On Quantum Data Encodings, Yayu Mo
Noise-Embedded Image Processing Based On Quantum Data Encodings, Yayu Mo
Multidisciplinary Studies Theses and Dissertations
Advancements in quantum information have significantly impacted the field of image processing, although challenges remain. Especially in the edge detection and image encoding area, distorted feature and noises would affect the further classification or super resolution tasks. In our work, we conduct researches on two stages to both evaluate the potential of Quantum-based Convolutional Structure in extracting distorted feature and further explore the effects of quantum noise channels on quantum image encodings.
In the first stage, we propose a method to extract distorted edge features by applying shallow layers in quantum convolutional neural networks (QCNN). By combining the advantages of …
Effects Of Group Delay Dispersion In Silica Glass On Non-Gaussian Laser Pulses, Lars Pedersen
Effects Of Group Delay Dispersion In Silica Glass On Non-Gaussian Laser Pulses, Lars Pedersen
Honors Program: Senior Projects (Public)
We present an analysis of how the group delay dispersion in silica glass affects the envelope of non-Gaussian laser pulses. In particular, we examine femtosecond pulses in the ultraviolet regime with cosine squared and symmetric exponential envelope shapes. For both envelope shapes, our results show a linear or semi-linear dependence of both the maximum electric field strength and duration on the group delay dispersion when the pulse passes through the silica glass medium with a thickness between 1 μm and 10 μm. This computational analysis is done using a fast Fourier transform method.
An Integrative Approach To Einstein’S Field Equations Of General Relativity For High School Students, Christina M. Aintablian
An Integrative Approach To Einstein’S Field Equations Of General Relativity For High School Students, Christina M. Aintablian
Senior Honors Theses
Einstein’s Field Equations form the foundation of the theory of General Relativity, describing the interdependence of mass-energy and spacetime curvature, where curvature gives rise to gravity. However, the complexity of these equations makes them difficult for high school students to grasp. The mathematical framework of General Relativity is introduced step by step, beginning with relative motion and culminating in a discussion of complex phenomena that challenge modern physics. Each explanation intertwines core concepts of relativity with pre-established mental models to enhance learning. Through the use of figures, analogies, narratives, and thought experiments, a structured framework is developed to make relativity …
Development Of Lineal Energy Spectrum-Based Biological Effects Models For Protons, Joseph M. Decunha, Fada Guan, David Grosshans, Zhongxing Liao, Dragan Mirkovic, Oleg Vassiliev, Radhe Mohan
Development Of Lineal Energy Spectrum-Based Biological Effects Models For Protons, Joseph M. Decunha, Fada Guan, David Grosshans, Zhongxing Liao, Dragan Mirkovic, Oleg Vassiliev, Radhe Mohan
Dissertations and Theses (Open Access)
In this dissertation, methods are developed and described to allow for the rapid calculation of microdosimetric spectra (specifically, lineal energy) for protons. SuperTrack, a GPU-accelerated tool for calculation of microdosimetric spectra was developed and is capable of computing lineal energy spectra up to 5000x faster than using Geant4 directly. Proton lineal energy spectra generated by SuperTrack are indistinguishable from those generated by Geant4. With SuperTrack, large libraries of lineal energy spectra for monoenergetic protons spanning 0-300 MeV have been developed. The proton lineal energy spectra calculated by SuperTrack have been compared to experimental measurements made by a tissue equivalent proportional …
Heat Transfer Enhancement By Using Different Patterns Of The Receiver Circumference Of The Locally Fabricated, Khalid Abdullah Muhammad, Yaseen H. Mahmood, Othman K. Zidane
Heat Transfer Enhancement By Using Different Patterns Of The Receiver Circumference Of The Locally Fabricated, Khalid Abdullah Muhammad, Yaseen H. Mahmood, Othman K. Zidane
Baghdad Science Journal
The current study presents an experimental attempt to enhance the thermal performance of a parabolic solar collector, which is a tube made of copper, by using four different types of receiver coatings. The experiments were conducted with a mass flow rate of 1 L/min, utilizing deionized water as the heat transfer fluid, and a single-axis tracking system (north-south orientation). The experimental tests were carried out in Mosul, Iraq, during selected days of the months (May, June, July) in the year 2023, from 9 AM to 4 PM. The results indicated that when air was used as a type of receiver …
Probing Freeze Out Sensitivity In Nuclear Collisions Using Exact Solutions Of Fluid Dynamics, Julia Johnson
Probing Freeze Out Sensitivity In Nuclear Collisions Using Exact Solutions Of Fluid Dynamics, Julia Johnson
Seaver College Research And Scholarly Achievement Symposium
One of the primary goals in the field of high-energy nuclear collisions is to create and study a novel phase of matter known as quark-gluon plasma (QGP), a substance which can be extremely well described by fluid dynamics. However, two different criteria are often used to identify the point of freeze out, which defines when the fluid dynamical simulation of a nuclear collision should be terminated: either when the QGP fluid has cooled below a given temperature, or when it has reached a certain Knudsen number (a quantity that estimates how well the system can be modeled by a fluid). …
Parameter Estimation Of Binary Black Hole Coalescence Using Lstm Neural Networks, Lane Scheel
Parameter Estimation Of Binary Black Hole Coalescence Using Lstm Neural Networks, Lane Scheel
Undergraduate Honors Papers
The Advanced Laser Interferometer Gravitational Wave Observatory (aLIGO) made its first detection of gravitational waves in 2015. Since then, the rate of event detection has only increased, with a detection being made every 2-3 days during the current observing run, O4. This rapid influx of data has the potential to create bottle-necks in data analysis efforts, and can delay the scientific progress which require those efforts. Traditional gravitational wave data analysis techniques, such as matched filtering, require extremely large template banks of synthetic gravitational waveforms and can often fail to provide meaningful limits on system parameters. Not only is this …
Computational Modeling Of Astrophysical Systems, Leleya Iris Stallard
Computational Modeling Of Astrophysical Systems, Leleya Iris Stallard
Spring Showcase for Research and Creative Inquiry
This research project focuses on the computational modeling of astrophysical systems using Femap with NX Nastran. The goal was to simulate and analyze the vibrational behavior and structural deformation of celestial bodies under different material compositions and collision conditions. Materials such as iron, granite, titanium, and models for white dwarf stars were used to investigate how varying physical properties affect the systems' dynamic responses. Both isotropic and anisotropic models were created to represent realistic astrophysical materials. Through static and modal analyses, the study explored how internal structure and material stiffness influence the reaction of celestial objects to applied forces and …
Measuring Cosmic Rays With Muon Detectors (Quarknet), Aiden Burton, Jack W. Maseberg
Measuring Cosmic Rays With Muon Detectors (Quarknet), Aiden Burton, Jack W. Maseberg
SACAD: Scholarly Activities
We report measurement of atmospheric muon particles originating from cosmic rays. Using four QuarkNet project scintillators in an unstacked geometry, we are counting muons in coincidence with each other. We are currently refurbishing a second detector apparatus and will soon be capable of measuring coincidence events for larger shower surface areas using a total of eight scintillators.
Cubr2complexes With 3,5-Disubstituted Pyridine Ligands, Christopher Landee, Diane Dickie, Mark M. Turnbull
Cubr2complexes With 3,5-Disubstituted Pyridine Ligands, Christopher Landee, Diane Dickie, Mark M. Turnbull
Chemistry
Reaction of copper(II) bromide with 3,5-dichloropyridine (3,5-Cl2py) or 3,5-dimethylpyridine (3,5-Me2py) led to the isolation of the coordination polymers catena-poly[[bis(3,5-dichloropyridine)copper(II)]-di-μ-bromido], [CuBr2(C5H3Cl2N)2]n or [CuBr2(3,5-Cl2py)2]n (1), and catena-poly[[bis(3,5-dimethylpyridine) copper(II)]-di-μ-bromido], [CuBr2(C7H9N)2]n or [CuBr2(3,5- Me2py)2]n (2), respectively. The structures are characterized by bibromidebridged chains [d(av.)Cu Cu = 3.93 (9) A ]. In 1, the chains are linked perpendicular to the a axis by non-classical hydrogen bonds and halogen bonds, while in 2, only non-classical hydrogen bonds are observed. © 2025 International Union of Crystallography. All rights reserved.
Preparation Of The Compound (Y1−Xpbxba2cu2.85la0.15o6+Δ) Superconductor And Research Of The Impact Of Partial Substitution On The Structural Properties, Ekhlas Hassan, Haider M. J. Haider
Preparation Of The Compound (Y1−Xpbxba2cu2.85la0.15o6+Δ) Superconductor And Research Of The Impact Of Partial Substitution On The Structural Properties, Ekhlas Hassan, Haider M. J. Haider
Baghdad Science Journal
The purpose of this study is to find out the optimal substitution ratio for lead with yttrium through the structural properties of the prepared compounds. The superconductor compound (Y1−xPbxBa2Cu2.85La0.15O6+δ) was prepared by the solid state reaction (SSR) method. The effect of partial substitution for the lead on the compound's structural characteristics has been studied. The variation of (x) is (0, 0.05, 0.1, 0.15, 0.20, 0.25). With a pressure of 7 tons per square centimeter, the combined powder was formed into a disc with a thickness of (about 0.2 cm). The samples were sintered for a while (24 hours ) at …
The Implosion Of The Titan Submersible: A Stress–Strain Experiment, Gregory A. Dilisi, Steven J. Eppell, Richard A. Rarick
The Implosion Of The Titan Submersible: A Stress–Strain Experiment, Gregory A. Dilisi, Steven J. Eppell, Richard A. Rarick
2025 Faculty Bibliography
No abstract provided.
Phys 102 - All: General Physics I Lecture, Physics Department
Phys 102 - All: General Physics I Lecture, Physics Department
Physics Syllabi
No abstract provided.
Phys 121 - All: Physics Ii Lecture, Physics Department
Phys 121 - All: Physics Ii Lecture, Physics Department
Physics Syllabi
No abstract provided.
Phys 121-H02: Physics Ii Lecture, Tao Zhou
Phys 122 - 002: Electricity And Magnetism, Lindsay Goodwin
Phys 122 - 002: Electricity And Magnetism, Lindsay Goodwin
Physics Syllabi
No abstract provided.
Phys 433 - 002: Electromagnetism I, Gareth Perry
Phys 433 - 002: Electromagnetism I, Gareth Perry
Physics Syllabi
No abstract provided.
Phys 122 - All: Physics Ii Lecture, Tao Zhou
Coding In Webassign, Gary Malek
Coding In Webassign, Gary Malek
Sabbatical Projects
Sabbatical presentation from a 2024 Spring Sabbatical
Quantum Control Of An Oscillator With A Kerr-Cat Qubit, Andy Zhenghao Ding
Quantum Control Of An Oscillator With A Kerr-Cat Qubit, Andy Zhenghao Ding
Yale Graduate School of Arts and Sciences Dissertations
Noise presents a major obstacle to scaling up quantum computers, causing logical errors and preventing the reliable execution of quantum algorithms. Quantum error correction provides a path toward fault-tolerance, but this typically comes at the cost of significant resource overhead. Bosonic codes offer a hardware-efficient strategy for quantum error correction by redundantly encoding quantum information in the large Hilbert space of a harmonic oscillator. These codes have been employed to achieve landmark experimental demonstrations. However, these demonstrations are limited by transmon ancilla errors propagating to the encoded logical qubit during syndrome measurements. The Kerr-cat qubit has been proposed as a …
Spatial Control Of Nonlinear Interactions In Multimode Fibers, Kabish Wisal
Spatial Control Of Nonlinear Interactions In Multimode Fibers, Kabish Wisal
Yale Graduate School of Arts and Sciences Dissertations
In recent years, there has been significant advancement in controlling optical scattering by structuring the wavefront of the incident light, or `wavefront shaping'. Most applications of wavefront shaping have focused on linear scattering, but there is a growing interest in tailoring nonlinear scattering. In this thesis, we explore a new approach based on wavefront shaping for suppressing certain instabilities induced by nonlinear scattering in passive and active multimode fibers (MMFs). Specifically, we focus on suppressing stimulated Brillouin scattering (SBS) and transverse mode instability (TMI). A key motivation for our work is power scaling in high power fiber lasers and amplifiers, …
Plasma And Magnetic Coil Optimization, William Lee Austin, Lachlan Dean
Plasma And Magnetic Coil Optimization, William Lee Austin, Lachlan Dean
Undergraduate Theses, Professional Papers, and Capstone Artifacts
Lachlan Dean Coil Optimization for a High-Beta Stellarator-Tokamak Hybrid Magnetic coil configurations are developed for a tokamak-stellarator hybrid that is stable to both pressure- and current-driven modes for high values of beta. Previous work on this configuration [A. S. Ware, et al., Phys. Rev. Lett, 89, 125003 (2002)] was carried out using a fixed-boundary equilibrium (i.e., with no set of external coils) and prior attempts to develop an initial coil set using the COILOPT code were not successful. In this work, the recently developed SIMSOPT code [M. Landreman, et. al., J. Open Source Software 6, 3525 (2021)] is used to …
(1+1)D Topological Phases Enriched With Fusion Category Symmetries, Xinping Yang
(1+1)D Topological Phases Enriched With Fusion Category Symmetries, Xinping Yang
Yale Graduate School of Arts and Sciences Dissertations
Symmetry and its anomaly constrain a system's dynamics and provide a universal characterization of its behaviors. It serves as a powerful tool to understand exotic phases of matter, especially symmetry-protected topological (SPT) orders. The notion of generalized symmetries requires extending our previous understanding of topological phases to those enriched by fusion category symmetries, yet new mathematical formalism is needed to apply unitary fusion category symmetries to a microscopic system. This thesis starts with a model-independent description of an abstract spin chain viewed as a net of C*-algebras. From a microscopic SymTFT, categorical structures describing symmetry and symmetry charges can be …
Bosonization And Fermionization Of Categorical Symmetries, Karan Bhatia
Bosonization And Fermionization Of Categorical Symmetries, Karan Bhatia
Yale Graduate School of Arts and Sciences Dissertations
The thesis investigates the processes of bosonization and fermionization within the framework of fusion category symmetries, which serve as the mathematical language for understanding topological phases of matter. We show that all fermionic fusion categories can be bosonized via a minimal braiding construction, providing a systematic method to relate fermionic and bosonic topological orders. Conversely, certain bosonic fusion categories that contain a Z_2 symmetry object can be fermionized using the same construction. However, a concrete obstruction arises when attempting to fermionize the remaining bosonic fusion categories, specifically those whose fusion rules involve two fixed points fusing into an odd number …
Characterizing And Modeling Spectral State Dynamics In Human Cortex, Heraclitos Maximos Lefcochilos-Fogelquist
Characterizing And Modeling Spectral State Dynamics In Human Cortex, Heraclitos Maximos Lefcochilos-Fogelquist
Yale Graduate School of Arts and Sciences Dissertations
There is increasing evidence that the large-scale spectral dynamics of human cortex can exhibit non-Gaussian features and marked variation over a range of timescales in resting state. Robust documentation and characterization of such complex phenomena, however, remains a challenge and is comparatively sparse, given the paradigmatic complexity of the human brain. Here, we adopt a methodological approach which can account for dynamic changes in spectral signals of electrophysiological data by explicitly using a measure of spectral variation over time, for which we can generate single-variable time courses, enabling robust characterization of the real-time activity of spectral modes across various timescales. …
Artificial Intelligence In Science And Society: The Vision Of Usern, Tommaso Dorigo, Gary D. Brown, Carlo Casonato, Artemi Cerda, Joseph Ciarrochi, Mauro Da Lio, Nicole D'Souza, Nicolas R. Gauger, Steven C. Hayes, Stefan G. Hofmann, Robert Johansson, Marcus Liwicki, Fabien Lotte, Juan J. Nieto, Giulia Olivato, Peter Parnes, George Perry, Alice Plebe, Idupulapati M. Rao, Nima Rezaei, Fredrik Sandin, Andrey Ustyuzhanin, Giorgio Vallortigara, Pietro Vischia, Niloufar Yazdanpanah
Artificial Intelligence In Science And Society: The Vision Of Usern, Tommaso Dorigo, Gary D. Brown, Carlo Casonato, Artemi Cerda, Joseph Ciarrochi, Mauro Da Lio, Nicole D'Souza, Nicolas R. Gauger, Steven C. Hayes, Stefan G. Hofmann, Robert Johansson, Marcus Liwicki, Fabien Lotte, Juan J. Nieto, Giulia Olivato, Peter Parnes, George Perry, Alice Plebe, Idupulapati M. Rao, Nima Rezaei, Fredrik Sandin, Andrey Ustyuzhanin, Giorgio Vallortigara, Pietro Vischia, Niloufar Yazdanpanah
All Peer-Reviewed Publications
The recent rise in relevance and diffusion of Artificial Intelligence (AI)-based systems and the increasing number and power of applications of AI methods invites a profound reflection on the impact of these innovative systems on scientific research and society at large. The Universal Scientific Education and Research Network (USERN), an organization that promotes initiatives to support interdisciplinary science and education across borders and actively works to improve science policy, collects here the vision of its Advisory Board members, together with a selection of AI experts, to summarize how we see developments in this exciting technology impacting science and society in …
Nonlinear Wave Dynamics In Asteroseismology With Application To Delta Scuti Stars, Mohammed Mourabit
Nonlinear Wave Dynamics In Asteroseismology With Application To Delta Scuti Stars, Mohammed Mourabit
Physics Dissertations - Archive
This thesis compiles the collection of works in nonlinear astroseismology and its implication to the δ Sct variable that we carried over the course of five years. With the advent of high-resolution space missions such as the Kepler and TESS telescopes, we were able to see significant progress in the field in recent years. Nonetheless the new technologies also brought an increasing number of observation that are seemingly contradictory to the linear theory of asteroseismology. In particular, we find the δ Sct variable, which eludes our models in terms of how varied we find they spectra for stars with very …