Modeling An Extra Planet's Effects On Earth,
2024
Florida Institute of Technology
Modeling An Extra Planet's Effects On Earth, Emily Simpson
Aerospace, Physics, and Space Science Student Publications
Orbital dynamics play a crucial role in determining the habitability of exoplanets, and many models have been developed to study the dynamical evolution of broader planetary system structure. To further investigate the implications this has regarding planetary habitability, this project simulated the evolution of the Solar System with an additional planet orbiting in place of the Asteroid Belt using the Gravitational Rigid-body InTegrator (GRIT) package. 21 total simulations were run for 100,000 years with varying values for the extra planet’s mass (from 0.01 to 10 Earth masses) and orbital parameters (based on the 4 most massive asteroids in the Asteroid …
A Distinct Radial Acceleration Relation Across The Brightest Cluster Galaxies And Galaxy Clusters,
2024
Case Western Reserve University
A Distinct Radial Acceleration Relation Across The Brightest Cluster Galaxies And Galaxy Clusters, Pengfei Li, Stacy S. Mcgaugh
Faculty Scholarship
Recent studies reveal a radial acceleration relation (RAR) in galaxies, which illustrates a tight empirical correlation connecting the observational acceleration and the baryonic acceleration with a characteristic acceleration scale. However, a distinct RAR has been revealed on brightest cluster galaxy (BCG) cluster scales with a seventeen-times-larger acceleration scale due to the gravitational lensing effect. In this work, we systematically explore the acceleration and mass correlations between dynamical and baryonic components in 50 BCGs. To investigate the dynamical RAR in BCGs, we derived their dynamical accelerations from the stellar kinematics using the Jeans equation through Abel inversion and adopted the baryonic …
A New Effective Gravitational Lensing Approach To Constrain Dark Matter,
2024
The University of New Mexico
A New Effective Gravitational Lensing Approach To Constrain Dark Matter, Birendra Dhanasingham
Physics & Astronomy ETDs
Galaxy-scale strong gravitational lenses offer a unique window into understanding the nature and distribution of dark matter at sub-galactic scales. Beyond the main-lens subhalos, the inclusion of line-of-sight dark matter halos has become essential in lens studies due to their substantial role in perturbing lensed images, making multi-plane lensing a crucial aspect of any lens study. We highlight that these line-of-sight halos appear extended tangentially along the lensing critical line in the effective convergence maps due to the nonlinear nature of multiplane lensing, resulting in a characteristic anisotropic signature in the deflection field. Leveraging tools from large-scale structure analyses, this …
Mapping Out The Sky,
2024
Parkland College
Mapping Out The Sky, Erik Johnson
Natural Science Faculty
Astronomers are often asked to help identify UFOs. It's a reasonable request since the term means "unidentified flying object." An untrained observer may not know which celestial objects are visible at night, even in light-polluted skies. They may mistake a plane for a planet, a bright star, or a satellite.
Quantum Computation Using Large Spin Qudits,
2024
University of New Mexico
Quantum Computation Using Large Spin Qudits, Sivaprasad Thattupurackal Omanakuttan
Physics & Astronomy ETDs
This dissertation explores quantum computation using qudits encoded into large spins, emphasizing the concept of quantum co-design to harness the unique capabilities of physical platforms for enhanced quantum information processing. First, we delve into the generation of high-fidelity universal gate sets for quantum computation with qudits. Leveraging principles from quantum optimal control, Rydberg physics, and the atomic structure of alkaline-earth atoms, we propose protocols for high-fidelity universal gate sets in the ground state of 87Sr with reasonable experimental parameters. Next, we analyze schemes to encode a qubit in the large spin qudits for fault-tolerant quantum computation (FTQC). By comprehending …
Simulating Continuous Gravitational Waves,
2024
Fort Hays State University
Simulating Continuous Gravitational Waves, Ivan Mihael Villalba Moran
SACAD: Scholarly Activities
Using a table-top Michelson Interferometer to replicate Laser Interferometer Gravitational-Wave Observatory (LIGO) arrangement, we use sound waves to simulate Continuous Gravitational Waves (CWs). Using the NumPy package in Python programming, we recover the frequency of the injected sinusoidal signal using the mathematics of the Fourier Transform. Currently, we are trying to implement the Hidden Markov Model along with the Viterbi Algorithm as a method to detect Wandering Continuous Gravitational Waves.
The Jesuit Tradition Of Astronomy At Holy Cross,
2024
College of the Holy Cross
The Jesuit Tradition Of Astronomy At Holy Cross, Sarah Campbell M.A., M.S.I.S.
Staff publications
This paper summarizes the study of astronomy and related fields as part of the curriculum at the College of the Holy Cross. It briefly profiles four Jesuit priests who were associated with Holy Cross and made significant contributions to the study of astronomy, solar physics and other scientific disciplines. The history of a campus observatory is briefly described as well.
This paper was presented an event sponsored by the Holy Cross Libraries to commemmorate the solar exclipse which occurred April 8. 2024.
A Search For Intermediate-Mass Black Holes In Compact Stellar Systems Through Optical Emissions From Tidal Disruption Events,
2024
The University of Texas Rio Grande Valley
A Search For Intermediate-Mass Black Holes In Compact Stellar Systems Through Optical Emissions From Tidal Disruption Events, Richard T. Pomeroy, Mark A. Norris
Physics & Astronomy Faculty Publications
Intermediate-mass black holes (IMBH) are expected to exist in globular clusters (GCs) and compact stellar systems (CSS) in general, but none have been conclusively detected. Tidal disruption events (TDEs), where a star is tidally disrupted by the gravitational field of a black hole, have been observed to occur around the supermassive black holes (SMBH) found at the centres of galaxies, and should also arise around IMBHs, especially in the dense stellar cores of CSS's. However, to date none have been observed in such environments. Using data from the Zwicky Transient Facility (ZTF) we search for TDEs associated with CSS, but …
Search For Extreme Mass Ratio Inspirals Using Particle Swarm Optimization And Reduced Dimensionality Likelihoods,
2024
The University of Texas Rio Grande Valley
Search For Extreme Mass Ratio Inspirals Using Particle Swarm Optimization And Reduced Dimensionality Likelihoods, Xiao-Bo Zou, Soumya Mohanty, Hong-Gang Luo, Yu-Xiao Liu
Physics & Astronomy Faculty Publications
Extreme-mass-ratio inspirals (EMRIs) are significant observational targets for spaceborne gravitational wave detectors, namely, LISA, Taiji, and Tianqin, which involve the inspiral of stellar-mass compact objects into massive black holes (MBHs) with a mass range of approximately 104 ∼107��⊙ . EMRIs are estimated to produce long-lived gravitational wave signals with more than 105 cycles before plunge, making them an ideal laboratory for exploring the strong-gravity properties of the spacetimes around the MBHs, stellar dynamics in galactic nuclei, and properties of the MBHs itself. However, the complexity of the waveform model, which involves the superposition of multiple harmonics, as well as the …
Radial Acceleration Relation Of Galaxies With Joint Kinematic And Weak-Lensing Data,
2024
Case Western Reserve University
Radial Acceleration Relation Of Galaxies With Joint Kinematic And Weak-Lensing Data, Tobias Mistele, Stacy S. Mcgaugh
Faculty Scholarship
We combine kinematic and gravitational lensing data to construct the Radial Acceleration Relation (RAR) of galaxies over a large dynamic range. We improve on previous weak-lensing studies in two ways. First, we compute stellar masses using the same stellar population model as for the kinematic data. Second, we introduce a new method for converting excess surface density profiles to radial accelerations. This method is based on a new deprojection formula which is exact, computationally efficient, and gives smaller systematic uncertainties than previous methods. We find that the RAR inferred from weak-lensing data smoothly continues that inferred from kinematic data by …
Phys 211h,
2024
University of Nebraska - Lincoln
Phys 918,
2024
University of Nebraska - Lincoln
Phys 926,
2024
University of Nebraska - Lincoln
Group Iv Topological Quantum Alloy And The Role Of Short-Range Order: The Case Of Ge-Rich Ge1–XPbX,
2024
Rensselaer Polytechnic Institute
Group Iv Topological Quantum Alloy And The Role Of Short-Range Order: The Case Of Ge-Rich Ge1–XPbX, Yunfan Liang, Shunda Chen, Xiaochen Jin, Damien West, Shui-Qing Yu, Tianshu Li, Shengbai Zhang
Electrical Engineering and Computer Science Faculty Publications and Presentations
Despite the explosion of interest in topological materials over the last decades, their applications remain limited due to challenges in growth and incorporation with today’s microelectronics. As a potential bridge to close this gap, we investigate the group-IV alloy Ge1–xPbx, in the Ge-rich condition using density functional theory and show that relatively low concentrations of Pb (~9.4%) can lead to a topological phase transition. Furthermore, the calculation of the Z2 invariant for both the random alloy and the alloy with short-range order (SRO) indicate that the topological phase of the material can be directly modified …
Phys 401/801,
2024
University of Nebraska - Lincoln
Creation Of Bound Half-Fermion Pairs By Solitons,
2024
University of South Carolina
Creation Of Bound Half-Fermion Pairs By Solitons, Sapan Karki, Brett Altschul
Faculty Publications
In the presence of topologically nontrivial bosonic field configurations, the fermion number operator may take on fractional eigenvalues, because of the existence of zero-energy fermion modes. The simplest examples of this occur in 1+1 dimensions, with zero modes attached to kink-type solitons. In the presence of a kink-antikink pair, the two associated zero modes bifurcate into positive and negative energy levels with energies ±ge-gΔ, in terms of the Yukawa coupling g≪1 and the distance Δ between the kink and antikink centers. When the kink and antikink are moving, it seems that there could be Landau–Zener-like transitions between these …
Study Of Deep Learning Models To Classify Nasa’S Kepler Light Curves,
2024
Old Dominion University
Study Of Deep Learning Models To Classify Nasa’S Kepler Light Curves, Heena Minnich
Computer Science Theses & Dissertations
The search for exoplanets has been an ongoing effort since the first discoveries of planets beyond our solar system in the 1990s. Finding a potentially habitable planet outside our solar system could provide key insights on life elsewhere in the universe. NASA Missions such as the Kepler, launched in 2009 and completed in 2018, have provided a massive amount of data in this goal by using the transit method to discover repetitive and periodic dips in visible light around a star. The transit method has been used to measure flux, the brightness of a star over time. These flux time …
Determining The Lightcurves And Rotational Periods Of Four Main Belt Asteroids,
2024
East Texas A&M University
Determining The Lightcurves And Rotational Periods Of Four Main Belt Asteroids, Kaitlyn Kalisek
Honors Theses
This research found lightcurves and rotational periods of four main belt asteroids, 2854 Rawson, 5142 Okutama, (14362) 1988 MH, and 28248 Barthelemy. The A&M-Commerce observatory 0.7 meter telescope equipped with a CCD camera was used to collect multiple nights of data for each asteroid which was then analyzed to determine the asteroid’s lightcurve, rotational period, and create a possible 3D model. The rotational periods were found to be 4.775 ± 0.001 h for 2854 Rawson, 3.803 ± 0.001 h for 5142 Okutama, 3.645 ± 0.001 h for (14362) 1988 MH, and 3.128 ± 0.002 h for 28248 Barthelemy.
Phys 142,
2024
University of Nebraska - Lincoln
Phys 812,
2024
University of Nebraska - Lincoln
