Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Engineering (221)
- Optics (138)
- Atomic, Molecular and Optical Physics (135)
- Condensed Matter Physics (127)
- Astrophysics and Astronomy (103)
-
- Other Physics (92)
- Electrical and Computer Engineering (88)
- Chemistry (78)
- Life Sciences (76)
- Quantum Physics (74)
- Engineering Physics (71)
- Materials Science and Engineering (53)
- Elementary Particles and Fields and String Theory (51)
- Mathematics (51)
- Computer Sciences (50)
- Nuclear (45)
- Biological and Chemical Physics (41)
- Fluid Dynamics (40)
- Electromagnetics and Photonics (39)
- Plasma and Beam Physics (39)
- Biology (31)
- Mechanical Engineering (31)
- Applied Mathematics (29)
- Medicine and Health Sciences (27)
- Statistical, Nonlinear, and Soft Matter Physics (26)
- Nanoscience and Nanotechnology (24)
- Social and Behavioral Sciences (24)
- Biochemistry, Biophysics, and Structural Biology (23)
- Institution
-
- University of Nebraska - Lincoln (76)
- Old Dominion University (64)
- City University of New York (CUNY) (57)
- Missouri University of Science and Technology (55)
- University of Texas Rio Grande Valley (53)
-
- Utah State University (51)
- Air Force Institute of Technology (43)
- TÜBİTAK (39)
- University of Central Florida (32)
- Louisiana State University (28)
- Ministry of Higher and Secondary Specialized Education of the Republic of Uzbekistan (26)
- University of Malaya (26)
- University of New Mexico (26)
- Technological University Dublin (25)
- University of Nevada, Las Vegas (25)
- Michigan Technological University (24)
- California Polytechnic State University, San Luis Obispo (23)
- Karbala International Journal of Modern Science (23)
- University of Kentucky (22)
- Washington University in St. Louis (22)
- University of South Carolina (20)
- Portland State University (17)
- Chapman University (16)
- Macalester College (16)
- University of Arkansas, Fayetteville (16)
- University of Texas at El Paso (15)
- New Jersey Institute of Technology (14)
- University of Texas at Arlington (14)
- Rowan University (13)
- Chulalongkorn University (12)
- Keyword
-
- Physics (53)
- Department of Physics (26)
- Optics (10)
- Physical Sciences (10)
- Spectroscopy (10)
-
- Scattering (9)
- Gravitational waves (8)
- Machine learning (8)
- Physics and Astronomy (8)
- SOARS (Conference) (2020 : University of North Florida) -- Posters; University of North Florida. Office of Undergraduate Research; University of North Florida. Graduate School; College students – Research -- Florida – Jacksonville -- Posters; University of North Florida – Undergraduates -- Research -- Posters; University of North Florida. Department of Physics -- Research -- Posters; Biology (8)
- Thin films (8)
- And Chemistry -- Research – Posters (7)
- Photonics (7)
- Quantum (7)
- Quantum chromodynamics (7)
- Raman spectroscopy (7)
- Simulation (7)
- Astronomy (6)
- Density functional theory (6)
- Plasma (6)
- Radiation (6)
- Self-assembly (6)
- Superconductivity (6)
- Thermodynamics (6)
- Thesis (6)
- Electron scattering (5)
- Galaxy evolution (594) (5)
- Graphene (5)
- Lasers (5)
- Lattice (5)
- Publication
-
- Physics Faculty Publications (58)
- Physics Faculty Research & Creative Works (48)
- Theses and Dissertations (45)
- Faculty Publications (44)
- Physics & Astronomy Faculty Publications (42)
-
- Turkish Journal of Physics (39)
- Electronic Theses and Dissertations, 2020-2023 (29)
- Student Works (2020-2029) (26)
- Physics (25)
- Karbala International Journal of Modern Science (23)
- Physics Faculty Publications and Presentations (23)
- Articles (22)
- Michigan Tech Publications, Part 1 (20)
- Advanced Science Research Center (18)
- Publications and Research (18)
- Department of Physics and Astronomy: Faculty Publications (16)
- LSU Doctoral Dissertations (16)
- Macalester Journal of Physics and Astronomy (16)
- Dissertations (15)
- Dissertations, Theses, and Capstone Projects (15)
- Arts & Sciences Graduate Student Theses and Dissertations (13)
- Electronic Theses and Dissertations (13)
- Physics Capstone Projects (13)
- Chulalongkorn University Theses and Dissertations (Chula ETD) (12)
- Graduate Theses and Dissertations (12)
- College of Science & Mathematics Departmental Research (11)
- Pacific Faculty Work (11)
- Physics & Astronomy Faculty Research (11)
- Theses and Dissertations--Physics and Astronomy (11)
- Utah Space Grant Consortium (11)
- Publication Type
- File Type
Articles 1261 - 1290 of 1314
Full-Text Articles in Physics
The Calculation Of Total Fragment Excitation Energy For Photofission Of Uranium Isotopes, Mojtaba Jamiati, Payam Mehdipour Kaldiani
The Calculation Of Total Fragment Excitation Energy For Photofission Of Uranium Isotopes, Mojtaba Jamiati, Payam Mehdipour Kaldiani
Turkish Journal of Physics
The total excitation energy as a function of fragment mass (TXE/A) are calculated for neutron induced fission of $^{235}$U and photofission of $^{238}$U by using the statistical model. With comparing the calculated results and the experimental data, the statistical model is modified. In new modified model, TXE are calculated by adding the neutron binding energy to the deformation energy. The calculated results using modified statistical model are in good agreement with the experimental data. Then, the total excitation energy as a function of fragment mass (TXE/A) are evaluated for photofission of Uranium isotopes.
Unraveling Energy Consumption By Using Low-Cost And Reevaluated Thermoelectric Thin Films, Gi̇zem Durak Yüzüak, Seray Özkan, Ercüment Yüzüak
Unraveling Energy Consumption By Using Low-Cost And Reevaluated Thermoelectric Thin Films, Gi̇zem Durak Yüzüak, Seray Özkan, Ercüment Yüzüak
Turkish Journal of Physics
Energy is undoubtedly one of our most important demands whose consumption is constantly increasing and will continue to increase soon. One of the most important factors in attaining the required energy is to provide high efficiency at a low cost with the help of new technological improvements by evaluating wastes. Energy demand could be achieved for a relatively large thermoelectric power value by recycling the Peltier modules from waste ones and adjusting their properties with nanotechnology. For this aim, thermoelectric thin film modules were grown on silicon (Si), glass, and Kapton substrates with thermal evaporation method by using two different …
Stable Anisotropic Single-Layer Of Rete$_2$: A First Principles Prediction, Mehmet Yağmurcukardeş
Stable Anisotropic Single-Layer Of Rete$_2$: A First Principles Prediction, Mehmet Yağmurcukardeş
Turkish Journal of Physics
In order to investigate the structural, vibrational, electronic, and mechanical features of single-layer ReTe$_2$ first-principles calculations are performed. Dynamical stability analyses reveal that single-layer ReTe$_2$ crystallize in a distorted phase while its 1H and 1T phases are dynamically unstable. Raman spectrum calculations show that single-layer distorted phase of ReTe$_2$ exhibits 18 Raman peaks similar to those of ReS$_2$ and ReSe$_2$. Electronically, single-layer ReTe$_2$ is shown to be an indirect gap semiconductor with a suitable band gap for optoelectronic applications. In addition, it is found that the formation of Re-units in the crystal induces anisotropic mechanical parameters. The in-plane stiffness and …
Weak Deflection Angle Of Black-Bounce Traversable Wormholes Using Gauss-Bonnet Theorem In The Dark Matter Medium, Ali Övgün
Turkish Journal of Physics
Inthispaper, wefirstusetheopticalmetricsofblack-bouncetraversablewormholestocalculatetheGaussian curvature. Then we use the Gauss-Bonnet theorem to obtain the weak deflection angle of light from the black-bounce traversable wormholes. We investigate the effect of dark matter medium on weak deflection angle using the Gauss-Bonnet theorem. We show how weak deflection angle of wormhole is affected by the bounce parameter a. Using the Gauss-Bonnet theorem for calculating weak deflection angle shows us that light bending can be thought as a global and topological effect.
Optimization Of Collection Optics For Maximum Fidelity In Entangled Photon Sources, Kadi̇r Durak
Optimization Of Collection Optics For Maximum Fidelity In Entangled Photon Sources, Kadi̇r Durak
Turkish Journal of Physics
In this report,decoherence sources for entangled photons created by spontaneous parametricdown-conversion phenomenon are studied. The phase and spatial distinguishability of photon pairs from orthogonal crystals reduce the maximum achievable entanglement fidelity. Carefully chosen compensation crystals are used to erase the phase and spatial traces of down-conversion origins. Emission angle of photon pairs also leads to optical path difference and results in phase distinguishability. A realistic scenario is numerically modelled, where the photon pairs with nonzero emission angle gather a phase difference. These pairs can still be collected and manipulated for practical use but the collection optics adds upon the phase …
Quantum Gravity Correction To The Thermodynamic Quantities Of The Charged Drgt Black Hole, Gani̇m Geçi̇m
Quantum Gravity Correction To The Thermodynamic Quantities Of The Charged Drgt Black Hole, Gani̇m Geçi̇m
Turkish Journal of Physics
In this study, in the framework of the Hamilton approach, the quantum gravity effect on Hawking temperature, on the specific heat capacity, and on the stability conditions of the charged de Rham, Gabadadze, and Tolley (dRGT) black hole are investigated by using the tunneling processes of both charged massive scalar and Dirac particles. It is shown that quantum corrected Hawking temperature depends not only on the black hole properties but also on the properties of the tunnelling particles. It is also observed that quantum corrected Hawking temperature is lower than that of the standard Hawking temperature. Also, the specific heat …
Investigating The Inclusiveness Of Stem Courses And Reducing Barriers By Using The Universal Design For Learning Framework, Westley James
Investigating The Inclusiveness Of Stem Courses And Reducing Barriers By Using The Universal Design For Learning Framework, Westley James
Electronic Theses and Dissertations, 2020-2023
Students with disabilities are in postsecondary STEM courses and degree programs, but only a few studies have investigated how STEM courses can be designed to support students with disabilities. We began addressing this gap by interviewing students with diagnoses characterized by variations in executive functions about their experiences in postsecondary STEM courses. We analyzed the interviews through a social relational perspective of disability as this allowed us to identify how course structures disable students from effective engagement with STEM courses. We found STEM courses present heightened barriers compared to non-STEM courses, with common barriers including a lack of resources and …
Theoretical Studies Of Collisions Involving Three Bodies And Electron-Molecule Collisions Relevant To Astrophysical And Atmospheric Conditions, Chi Hong Yuen
Electronic Theses and Dissertations, 2020-2023
Accurate rate coefficients of atomic and molecular processes allow us to probe the conditions in space and understand the history of the Universe. Although experimental rate coefficients are the most desirable, availability of accurate rate coefficients of some processes depends on rigorous theoretical studies. In this dissertation, theoretical tools for collisions involving three bodies are discussed and applied to three different reactions. Rate coefficient of the reactive scattering of H2 + D- is computed using the ABC program. The present results are about ten times smaller than the experimental upper limit, suggesting that a further improvement of the sensitivity of …
Application Of Optical Trapping To Obtain Single-Source Str Profiles From Forensically Relevant Body Fluid Mixtures With Modified Dna Analysis Workflow, Benjamin J. O'Brien
Application Of Optical Trapping To Obtain Single-Source Str Profiles From Forensically Relevant Body Fluid Mixtures With Modified Dna Analysis Workflow, Benjamin J. O'Brien
Master of Science in Forensic Science Directed Research Projects
Current methods of mixture separation in forensic DNA laboratories typically deconvolute the mixture after analysis using statistical analysis or probabilistic genotyping. To save time and effort of labs already backlogged, a method to separate mixtures on a cellular level before analysis needs to be developed. Optical trapping is a method that uses a focused 1064 nm laser to manipulate cells. Previous research has shown that approximately 50 spermatozoa or 15 leukocytes from a liquid sample are required to produce a full STR DNA profile. It was found that the number of spermatozoa required remains constant when the method of sample …
On Systematics And Their Mitigation In Magis-100 Atomic Interferometer Experiment To Explore The Dark Sector And Early Universe, Jeremiah Thomas Mitchell
On Systematics And Their Mitigation In Magis-100 Atomic Interferometer Experiment To Explore The Dark Sector And Early Universe, Jeremiah Thomas Mitchell
Graduate Research Theses & Dissertations
Understanding the dark sector and early universe are of great importance to those in cosmology as well as physics in general. To probe these areas many large detector platforms and international experiments have come online to work in unison to test proposed models of dark matter and to provide direct detection of gravitational waves to explore what cannot be seen. Along these lines the Matter-wave Atomic Gradiometer and Interferometric Sensor (MAGIS-100) has set out to explore these fields of study using atom interferometry which provides a unique and scalable method for making sensitive measurements as well as being a test …
Empirical Study On The Effects Of Acquisition Parameters For Ftir Hyperspectral Imaging Of Brain Tissue, David Perezguaita, Julia Sacharz, Mustafa Kasniz, Shaiju Nazeer, Bayden Wood, Philip Heraud
Empirical Study On The Effects Of Acquisition Parameters For Ftir Hyperspectral Imaging Of Brain Tissue, David Perezguaita, Julia Sacharz, Mustafa Kasniz, Shaiju Nazeer, Bayden Wood, Philip Heraud
Articles
Fourier transform infrared (FTIR) spectroscopic imaging is a powerful technique for molecular imaging of pathologies associated with the nervous systems including multiple sclerosis research. However, there is no standard methodology or standardized protocol for FTIR imaging of tissue sections that maximize the ability to discriminate between the molecular, white and granular layers, which is essential in the investigation of the mechanism of demyelination process. Tissue sections are heterogeneous, complex and delicate, hence the parameters to generate high quality images in minimal time becomes essential in the modern clinical laboratory. This article presents an FTIR spectroscopic imaging study of post-mortem human …
In-Situ Ellipsometric Study Of The Optical Properties Of Ltl-Doped Thin Film Sensors For Copper(Ii) Ion Detection, Dervil Cody, Tsvetanka Babeva, Violeta Madjarova, Anastasia Kharchenko, Sabad-E- Gul, Svetlana Mintova, Christopher J. Barrett, Izabela Naydenova
In-Situ Ellipsometric Study Of The Optical Properties Of Ltl-Doped Thin Film Sensors For Copper(Ii) Ion Detection, Dervil Cody, Tsvetanka Babeva, Violeta Madjarova, Anastasia Kharchenko, Sabad-E- Gul, Svetlana Mintova, Christopher J. Barrett, Izabela Naydenova
Articles
Optical sensors fabricated in zeolite nanoparticle composite films rely on changes in their optical properties (refractive index, n, and thickness, d) to produce a measurable response in the presence of a target analyte. Here, ellipsometry is used to characterize the changes in optical properties of Linde Type L (LTL) zeolite thin films in the presence of Cu2+ ions in solution, with a
view to improving the design of optical sensors that involve the change of n and/or d due to the adsorption of Cu2+ ions. The suitability of two different ellipsometry techniques (single wavelength and spectroscopic) for the evaluation of …
Particle Injection Simulation On Cold Spray Technology, Christopher A. Santini
Particle Injection Simulation On Cold Spray Technology, Christopher A. Santini
Electronic Theses and Dissertations
Computational Fluid Dynamics (CFD) is a useful tool when it comes to research in the fields of Aerodynamics, Turbomachinery, and is used in several other fields of research. CFD is an important tool in the engineering industry because it allows for understanding and evaluation of a new design, this can lead to advancements in developing a more efficient and effective design. This tool helps in the understanding of the flow phenomena and how it can interact with its surroundings. One of the main reasons in the use of CFD is to reduce the cost of testing a design by running …
Consciousness As A Factor In Evolution, Kenneth A. Augustyn
Consciousness As A Factor In Evolution, Kenneth A. Augustyn
Michigan Tech Publications, Part 1
What I call the mind began as a non-conscious robotic biochemical process control system in the very earliest forms of life. As life evolved, problems in control became more difficult and exceeded the computational capabilities of the organisms. Nature discovered a means of transcending computable physical processes resulting in non-computational subjective mental capabilities that, while still not conscious, had a degree of genuine autonomy from the physical world. These autonomous subjective wants and goals now affected the course of (but not the mechanism of) evolution. The integrated amalgam of robotic and transrobotic unconscious capabilities eventually gave rise to consciousness, which …
Investigation Of Phonon Polaritons In An Hbn Gan Heterostructure, Catherine G. O'Hearn
Investigation Of Phonon Polaritons In An Hbn Gan Heterostructure, Catherine G. O'Hearn
Graduate Theses, Dissertations, and Problem Reports (ETD)
There have been many great advances in the generation and manipulation of optics in the visible and near infrared (IR) range over the past decade. This is largely due to plasmonic enhancement, which has led to new technology in biosensing and molecule detection, solid-state lighting, and solar energy harvesting. The field of plasmonics uses quanta of plasma oscillations, plasmons, formed from the interaction between electromagnetic radiation and free electrons to enhance optical near field magnitudes. However, there is still a large region of the electromagnetic spectrum, covering the mid-infrared (MIR) and terahertz (THz) regions, ranging from 3 μm to 1 …
Synthesis Of Graphene Using Plasma Etching And Atmospheric Pressure Annealing: Process And Sensor Development, Andrew Robert Graves
Synthesis Of Graphene Using Plasma Etching And Atmospheric Pressure Annealing: Process And Sensor Development, Andrew Robert Graves
Graduate Theses, Dissertations, and Problem Reports (ETD)
Having been theorized in 1947, it was not until 2004 that graphene was first isolated. In the years since its isolation, graphene has been the subject of intense, world-wide study due to its incredibly diverse array of useful properties. Even though many billions of dollars have been spent on its development, graphene has yet to break out of the laboratory and penetrate mainstream industrial applications markets. This is because graphene faces a ‘grand challenge.’ Simply put, there is currently no method of manufacturing high-quality graphene on the industrial scale. This grand challenge looms particularly large for electronic applications where the …
Control Of Charged Particle Dynamics And Electron Power Absorption Dynamics Utilizing Voltage Waveform Tailoring In Capacitively Driven Radio-Frequency Plasmas, Steven W. Brandt
Control Of Charged Particle Dynamics And Electron Power Absorption Dynamics Utilizing Voltage Waveform Tailoring In Capacitively Driven Radio-Frequency Plasmas, Steven W. Brandt
Graduate Theses, Dissertations, and Problem Reports (ETD)
In this work, experimental measurements and analysis of numerical simulations are performed for capacitively coupled plasmas driven by tailored voltage waveforms under conditions which examine complicating factors present in industrial processes, including the influence of resonance effects, electronegative gases or gas mixtures, and plasma-surface interactions at a changing plasma-surface interface. Furthermore, the influence of different tailored voltage waveforms on the spatio-temporal electron power absorption, the generation of a DC self-bias, and on process relevant plasma parameters like ion energy distribution functions is investigated to provide a more complete understanding of the underlying fundamental plasma physics responsible for sustaining the discharge. …
Ultrafast Optical Properties Of La0.7sr0.3mno3 Thin Films, Saeed Yousefi Sarraf
Ultrafast Optical Properties Of La0.7sr0.3mno3 Thin Films, Saeed Yousefi Sarraf
Graduate Theses, Dissertations, and Problem Reports (ETD)
Thin film solids often exhibit different physical properties in the ultra-thin regime. Enhancement of surface to bulk ratio results in the domination of surface/interface related phenomena such as surface recombination. Moreover, in the ultra-thin regime, quantum size and quantum confinement effects can alter the band gap of the system and constrain the strain wave propagation in the thin film. Ultrafast properties of solids can also be drastically altered in the ultra-thin regime due to the aforementioned phenomena. Experimentally, observation of these phenomena is challenging due to the insufficient material to absorb and interact with the electromagnetic wave. This dissertation addresses …
Interpretations Of Bicoherence In Space & Lab Plasma Dynamics, Gregory Allen Riggs
Interpretations Of Bicoherence In Space & Lab Plasma Dynamics, Gregory Allen Riggs
Graduate Theses, Dissertations, and Problem Reports (ETD)
The application of bicoherence analysis to plasma research, particularly in non-linear, coupled-wave regimes, has thus far been significantly belied by poor resolution in time, and/or outright destruction of frequency information. Though the typical power spectrum cloaks the phase-coherency between frequencies, Fourier transforms of higher-order convolutions provide an n-dimensional spectrum which is adept at elucidating n-wave phase coherence. As such, this investigation focuses on the utility of the normalized bispectrum for detection of wave-wave coupling in general, with emphasis on distinct implications within the scope of non-linear plasma physics. Interpretations of bicoherent features are given for time series from …
Microfluidic Flow Direction And Rate Vector Sensor Based On A Partially Gold-Coated Tfbg, Changyu Shen, Dejun Liu, Xiaokang Lian, Tingting Lang, Chunliu Zhao, Yuliya Semenova, Jacques Albert
Microfluidic Flow Direction And Rate Vector Sensor Based On A Partially Gold-Coated Tfbg, Changyu Shen, Dejun Liu, Xiaokang Lian, Tingting Lang, Chunliu Zhao, Yuliya Semenova, Jacques Albert
Articles
In microfluidic chips applications, the monitoring of the rate and the direction of a microfluidic flow is very important. Here, we demonstrate a liquid flow rate and a direction sensor using a partially gold-coated tilted fiber Bragg grating (TFBG) as the sensing element. Wavelength shifts and amplitude changes of the TFBG transmission resonances in the near infrared reveal the direction of the liquid flowing along the fiber axis in the vicinity of the TFBG due to a nanoscale gold layer over part of the TFBG. For a device length of 10 mm (and a diameter of 125 µm for easy …
Quantum Defect Measurements For High Angular Momentum Rydberg States Of Potassium, Abraham Hill
Quantum Defect Measurements For High Angular Momentum Rydberg States Of Potassium, Abraham Hill
Honors Theses
We report measurements of the quantum defect for the f-, g-, and h-states of potassium with principal quantum number n between 26 and 29. Ground state potassium atoms in a magneto-optical trap are excited from the 4s state to the 5p state, then from the 5p state to the ndj state using lasers at 405nm and 980nm, respectively. We then measure the millimeter wave frequencies of the ndj to nl transitions. We extract the quantum defects from these frequency measurements in conjunction with the known d-state quantum defects. Experimental challenges with …
The Physics Ph.D. Program, University Of Arkansas, Semicentennial Celebration, Rajendra Gupta
The Physics Ph.D. Program, University Of Arkansas, Semicentennial Celebration, Rajendra Gupta
Physics Faculty Publications and Presentations
The Ph.D. program in physics at the University of Arkansas was established in 1959. The Department celebrated the program's semicentennial on October 16, 2009 by organizing a symposium and a banquet honoring the faculty who played important roles in starting and nurturing the program. This booklet presents a brief history of the Ph.D. program and an archival record of the celebration.
A Guide To Ligo–Virgo Detector Noise And Extraction Of Transient Gravitational-Wave Signals, B. P. Abbott, R. Abbott, Teviet Creighton, Mario C. Diaz, Soma Mukherjee, Volker Quetschke, Malik Rakhmanov, K. E. Ramirez, Satzhan Sitmukhambetov, Robert Stone, D. Tuyenbayev, W. H. Wang, A. K. Zadrozny
A Guide To Ligo–Virgo Detector Noise And Extraction Of Transient Gravitational-Wave Signals, B. P. Abbott, R. Abbott, Teviet Creighton, Mario C. Diaz, Soma Mukherjee, Volker Quetschke, Malik Rakhmanov, K. E. Ramirez, Satzhan Sitmukhambetov, Robert Stone, D. Tuyenbayev, W. H. Wang, A. K. Zadrozny
Physics & Astronomy Faculty Publications
The LIGO Scientific Collaboration and the Virgo Collaboration have cataloged eleven confidently detected gravitational-wave events during the first two observing runs of the advanced detector era. All eleven events were consistent with being from well-modeled mergers between compact stellar-mass objects: black holes or neutron stars. The data around the time of each of these events have been made publicly available through the gravitational-wave open science center. The entirety of the gravitational-wave strain data from the first and second observing runs have also now been made publicly available. There is considerable interest among the broad scientific community in understanding the data …
Quantum Correlations Between The Light And Kilogram-Mass Mirrors Of Ligo, Haocun Yu, L. Mcmuller, M. Tse, L. Barsotti, N. Mavalvala, J. Betzwieser, C. D. Blair, S. E. Dwyer, A. Effler, K. E. Ramirez
Quantum Correlations Between The Light And Kilogram-Mass Mirrors Of Ligo, Haocun Yu, L. Mcmuller, M. Tse, L. Barsotti, N. Mavalvala, J. Betzwieser, C. D. Blair, S. E. Dwyer, A. Effler, K. E. Ramirez
Physics & Astronomy Faculty Publications
Measurement of minuscule forces and displacements with ever greater precision encounters a limit imposed by a pillar of quantum mechanics: the Heisenberg uncertainty principle. A limit to the precision with which the position of an object can be measured continuously is known as the standard quantum limit (SQL) [1–4]. When light is used as the probe, the SQL arises from the balance between the uncertainties of photon radiation pressure imposed on the object and of the photon number in the photoelectric detection. The only possibility surpassing the SQL is via correlations within the position/momentum uncertainty of the object and the …
A Search For Resonant And Non-Resonant Di-Higgs Production In The Γγbb Channel Using The Atlas Detector, Tyler James Burch
A Search For Resonant And Non-Resonant Di-Higgs Production In The Γγbb Channel Using The Atlas Detector, Tyler James Burch
Graduate Research Theses & Dissertations
This dissertation presents a search for resonant and non-resonant di-Higgs production in the γγb ̄b final state using data from the ATLAS detector at the Large Hadron Collider (LHC). The search is performed on 36.1 fb−1 of data from proton-proton collisions at a center-of-mass energy of √s= 13 TeV collected in 2015 and 2016.
No significant excesses are observed in this search. The non-resonant analysis sets limits on the HH→γγb ̄b cross-section times branching ratio, with an upper observed (expected) limit of 0.73 (0.93) pb. The observed (expected) limits on the Higgs boson trilinear coupling at 95% Confidence Level (CL) …
The Synthesis Of Pb2sr2sm1-Xcaxcu3o8 And Characterization Of Its Structural And Superconducting Properties., Deblina Das
The Synthesis Of Pb2sr2sm1-Xcaxcu3o8 And Characterization Of Its Structural And Superconducting Properties., Deblina Das
Graduate Research Theses & Dissertations
Superconducting lead-based cuprate materials of the 2213 structural type, Pb2Sr2MCu3O8 (M=Sm1-xCax, Y1-xCax, Er1-xCax and Yb1-xCax), were synthesized and characterized using x-ray powder diffraction and the Rietveld structural refinements method. Pb2Sr2Sm1-xCaxCu3O8 single crystals were grown by an optimized flux method using various combinations of PbO/PbF2 solvents. Samples with different Sm/Ca ratios were investigated for their superconducting properties. Magnetic measurements reveal the presence of a transition at 120K. Preliminary x-ray diffuse scattering experiment at the Advanced Photon Source of Argonne National Laboratory demonstrates the high quality of one of our crystals and the presence of rod-like diffuse scattering connecting the Bragg peaks …
On The Self-Force Problem Of Point-Like Charged Particles In Classical Electrodynamics, Kevin J. Hamilton
On The Self-Force Problem Of Point-Like Charged Particles In Classical Electrodynamics, Kevin J. Hamilton
Graduate Research Theses & Dissertations
The problem of a point-like charged particle’s self-interaction force has been along-standing problem in the field of classical electrodynamics. For over a century,physicists have unsuccessfully developed a satisfactory solution until recently. Weexpand on the work done by Gralla et. al. [1] in order to establish a smooth andrelativistically correct formulation of point-like charged particles in motion and shedlight on related problems and applications, particularly the motion of elementary par-ticles with magnetic dipoles through non-uniform static magnetic fields. We conductnumerical simulations in order to quantify the magnitude of the perturbations fromthis self-force due to the new equations of motion relative to …
2d Confinement Of Thermal Gradients In Metallic Non-Local Spin Valves, Rachel K. Bennet
2d Confinement Of Thermal Gradients In Metallic Non-Local Spin Valves, Rachel K. Bennet
Electronic Theses and Dissertations
Non-local spin valves (NLSVs) are a valuable tool in the growing field of spintronics due to their unique ability to separate charge current from pure spin current. Their potential applications as read heads for hard-disk drives, as well as use as logic gates and other spin sensors, makes detailed understanding of their behavior under a wide range of operating conditions very important.
In this dissertation, I present results of extreme thermal engineering of the supporting substrate of NLSVs, which has a dramatic impact on the background signal of the device as well as contributions from thermal spin effects such as …
Development Of An Electron-Beam Halo Diagnostics, Christopher James Marshall
Development Of An Electron-Beam Halo Diagnostics, Christopher James Marshall
Graduate Research Theses & Dissertations
Electron beam halos defined as the peripheral fraction of the beam that does not contribute to the front end application. Particles located in the halo can cause damage to the particle accelerator and lower the power and quality of the beam. Being able to measure the beam halo could provide insight on the halo-formation mechanism and ultimately will improve the overall performance and quality of the beam. A halo diagnostic was designed, and a prototype built and commissioned. The diagnostics relies on detecting optical radiation by the electron beam and masking its core to enhance the detection of the halo. …
Search For Higgs Pair Production In The Bbτ Τ Final State With The Atlas Detector At The Large Hadron Collider, Puja Saha
Graduate Research Theses & Dissertations
Abstract: This is a search for a Beyond Standard Model (BSM) heavy scalar in the ATLAS detector at 13 TeV center of mass energy using Run 2 data set recorded in 2018 with an integrated luminosity 58.5 fb^{-1}. The heavy scalar (X) decays to two Standard Model (SM) like light Higgs (H) bosons that decay into the bbtautau final state. Particularly, the semi-leptonic final state of two tau's is considered in this search where one tau decays in leptonic final state and other to a hadronic final state. No evidence of a new scalar found, so upper limits are set …