Investigating Long-Lasting Meteor Train Phenomena In Optical And Radio Regimes,
2025
University of New Mexico
Investigating Long-Lasting Meteor Train Phenomena In Optical And Radio Regimes, Logan E. Cordonnier
Physics & Astronomy ETDs
Throughout history, meteors have been regarded as fascinating and portentous events, with bygone astronomers diligently recording their occurrence. The research presented herein continues in this tradition, using modern instruments, software, and data reduction techniques to study long-lasting meteor trail phenomena, specifically in the optical (persistent trains; PTs) and radio (meteor radio afterglows; MRAs) regimes. The overarching goal was to investigate the similarities between these phenomena, which began with the creation of a PT catalog. Many of the prior assumptions about the nature of PTs were found to be unsubstantiated, and several new behaviors were uncovered. This includes the discovery of …
Detecting Ionospheric Disturbances Using High Frequency Coastal Radar Transmissions From The West Coast Of The United States,
2025
Utah State University Space Dynamics Laboratory
Detecting Ionospheric Disturbances Using High Frequency Coastal Radar Transmissions From The West Coast Of The United States, Riley N. Troyer, Kenneth Obenberger, Michael Negale, Eugene Dao, Zsolt Balint, Eric Burnside, Kris Robinson, Jeffrey M. Holmes, Pavel Inchin, Jonathan Snively
Space Dynamics Laboratory Publications
Coastal radar system are located around the world and many happen to transmit at frequencies capable of skywave propagation via the ionosphere. Therefore, they can be detected hundreds to thousands of kilometers away. This paper demonstrates the opportunity to detect 39 Coastal Ocean Dynamics Application Radar transmitters located on the western coast of the United States using three HF radio receivers in Utah and New Mexico. It also illustrates the possibility to use the phase and Doppler measurements of these signals to derive displacements of the refracting ionospheric layer up to meter resolution for the 2023 annular solar eclipse, an …
Hot Donors In Cataclysmic Variables: The Case Of Ei Psc,
2025
The University of Texas Rio Grande Valley
Hot Donors In Cataclysmic Variables: The Case Of Ei Psc, Jan Kára, S. Zharikov, M. Wolf, N. Vaidman, A. Agishev, S. Khokhlov, C. E. Chavez
Physics & Astronomy Faculty Publications
Context. We present results of time-resolved optical spectroscopy and photometry of the short-orbital period dwarf nova EI Psc.
Aims. This study aims to determine fundamental system parameters of EI Psc, study properties of accretion structures in the system, and investigate its origin and current evolution state.
Methods. We analyse newly obtained time-resolved spectroscopic and photometric observations as well as archival data. We used light curve modelling, Doppler tomography, and MESA evolutionary models to study the characteristics of EI Psc.
Results. The system contains a relatively low temperature (Teff = 6130 K) white dwarf with mass of M …
Understanding Stellar Element Formation Through Nuclear Reactions,
2025
Gonzaga University
Understanding Stellar Element Formation Through Nuclear Reactions, Irena Langer, Mally Panek, Kiyah Young-Wilson, Adam Fritsch
Physics Student Scholarship
Studying nuclear structure has many applications, such as developing a stronger understanding of stellar nucleosynthesis, or how elements are formed inside of stars. Our research focuses on analysis of the proton evaporation nuclear reaction of Carbon-12 on Aluminum-27 in order to extract information about the structure of the nuclei involved. We are studying the cross section, or likelihood, of this reaction, using both experimental and modeled data. Since the cross section of a nuclear reaction depends on the physical characteristics of the nuclei involved, we can use the cross section to analyze our work.
Auroral Hemispheric Power Asymmetry During Geomagnetic Storms: A Multi-Database Investigation Using Ae And Supermag Indices,
2025
Morehead State University
Auroral Hemispheric Power Asymmetry During Geomagnetic Storms: A Multi-Database Investigation Using Ae And Supermag Indices, Melvin J. Reyes Lozada
Morehead State Theses and Dissertations
A thesis presented to the faculty of the College of Science and Engineering at Morehead State University in partial fulfillment of the requirements for the Degree Master of Science by Melvin J. Reyes Lozada on June 20, 2025.
Exploring The Very Early Cosmological History With Dark Matter And Primordial Black Holes,
2025
University of New Mexico - Main Campus
Exploring The Very Early Cosmological History With Dark Matter And Primordial Black Holes, Phuc Duc Loc Ngo
Physics & Astronomy ETDs
We explore the possibilities of nonstandard early cosmological histories and their potential roles to explain DM. We study how particle DM is produced with scenarios of early matter domination (EMD), how primordial black holes (PBHs), which could also be a DM candidate in certain mass ranges, are formed with enhanced curvature perturbation or FOPT and the corresponding gravitational wave (GW) signals, how PBHs could increase their mass by accretion during EMD and the corresponding GW signals.
Uncovering Multiscale Structure-Property Correlations Via Active Learning In Scanning Tunneling Microscopy,
2025
University of South Carolina
Uncovering Multiscale Structure-Property Correlations Via Active Learning In Scanning Tunneling Microscopy, Ganesh Narasimha, Deja Kong, Paras Regmi, Rongying Jin, Zheng Gai, Rama Vasudevan, Maxim Ziatdinov
Faculty Publications
Atomic arrangements and local sub-structures fundamentally influence emergent material functionalities. These structures are conventionally probed using spatially resolved studies and the property correlations are deciphered by a researcher based on sequential explorations, thereby limiting the efficiency and scope. Here we demonstrate a multi-scale Bayesian deep-learning based framework that automatically correlates material structure with its electronic properties using scanning tunneling microscopy (STM) measurements in real-time. Its predictions are used to autonomously direct exploration toward regions of the sample that optimize a given material property. This method is deployed on a low-temperature ultra-high vacuum STM to understand the structure-property relationship in a …
Study Of Agn Jet And Possible Connection Among Different Agn Classes,
2025
Manipal Centre for Natural Sciences,Centre of Excellence, MAHE, Manipal
Study Of Agn Jet And Possible Connection Among Different Agn Classes, Shahjahan Iqbal
University Departments
No abstract provided.
Spin Precession In Magnetized Kerr Spacetime,
2025
Manipal Centre for Natural Sciences,Centre of Excellence, MAHE, Manipal
Spin Precession In Magnetized Kerr Spacetime, Karthik Krishnamurthy Iyer
University Departments
No abstract provided.
Interacting Galaxy Clusters As A Probe To Cosmic Filaments,
2025
Manipal Centre for Natural Sciences,Centre of Excellence, MAHE, Manipal
Interacting Galaxy Clusters As A Probe To Cosmic Filaments, Shreya R. Kamath
University Departments
No abstract provided.
Photometric And Spectroscopic Properties Of Hydrogen-Rich Supernovae,
2025
Manipal Centre for Natural Sciences,Centre of Excellence, MAHE, Manipal
Photometric And Spectroscopic Properties Of Hydrogen-Rich Supernovae, Chaitrika B. M
University Departments
No abstract provided.
Probing Dust Grain Optical Properties In The Ism Using Diffuse Ultraviolet Observations Together With Radiative Transfer Modelling,
2025
Manipal Centre for Natural Sciences,Centre of Excellence, MAHE, Manipal
Probing Dust Grain Optical Properties In The Ism Using Diffuse Ultraviolet Observations Together With Radiative Transfer Modelling, Nilanjana Dey Choudhury
University Departments
No abstract provided.
Higher-Order Exceptional Points In A Non-Reciprocal Waveguide Beam Splitter,
2025
The University of Texas Rio Grande Valley
Higher-Order Exceptional Points In A Non-Reciprocal Waveguide Beam Splitter, Hamed Ghaemidizicheh, Shahram Dehdashti, Andreas Hanke, Ahmed Touhami, Janis Nötzel
Physics & Astronomy Faculty Publications
Non-Hermitian systems have attracted significant interest because of their intriguing properties, including exceptional points (EPs), where eigenvalues and the corresponding eigenstates coalesce. In particular, quantum systems with EPs exhibit an enhanced sensitivity to external perturbations, which increases with the order of the EP. Therefore, higher-order EPs hold significant potential for advanced sensing applications, but they are challenging to achieve due to stringent symmetry requirements. In this work, we study the dynamics of a generalized lossy waveguide beam splitter with asymmetric coupling by introducing non-reciprocity as a tunable parameter to achieve higher-order EPs even without dissipation. Moreover, we analyze the evolution …
Data Sonification: The Art Of Exploring Space Through Sound,
2025
Augustana College, Rock Island Illinois
Data Sonification: The Art Of Exploring Space Through Sound, Jessica Cotturone
Music: Student Scholarship & Creative Works
Data sonification is a cutting-edge, interdisciplinary field that involves the transformation of data into sound. As the amount of data collected in today’s world continues to rise exponentially, new collaborations between scientists, mathematicians, and musicians are exploring the potential applications of sonification. Turning data into sound can create new avenues for interpretation and can increase accessibility for visually-impaired populations. The sonic renderings produced by this practice exist on a spectrum from sound to music and vary in their levels of objectivity and expressivity. One of the major areas where data sonification is providing a new scientific and artistic perspective is …
Temperature, Albedo, And Emissivity Of Triton And Proteus From Voyager 2 Iris Data,
2025
University of Arkansas, Fayetteville
Temperature, Albedo, And Emissivity Of Triton And Proteus From Voyager 2 Iris Data, Garrett Nobis, Vincent Chevrier
Space and Planetary Science Faculty Publications and Presentations
The Voyager 2 infrared interferometer and spectrometer (IRIS) spectra for Triton are revisited, and the Proteus IRIS spectra are looked at for the first time. Fifty more spectra are added to the average of 16 previously used for Triton. The unit emissivity Planck function temperature result is 37.9 ± 0.5 K. Iterating IRIS temperatures over several emissivities allows for constraints on emissivity and Bond albedo based on past data. Upper and lower bounds on Triton’s temperature and albedo of 37.9 ± 0.5 to 46.1 ± 0.7 K for temperature and 0.67−0.86 for albedo are determined from the IRIS data and …
Artificial Intelligence And Astronomy: Lab Manual For Generative Ai-Based Learning Activities,
2025
Borough of Manhattan Community College, New York City College of Technology, CUNY
Artificial Intelligence And Astronomy: Lab Manual For Generative Ai-Based Learning Activities, Vasiliy Znamenskiy
Open Educational Resources
This lab manual introduces community college students to the intersection of artificial intelligence (AI) and astronomy through hands-on, inquiry-based activities. It explores how generative AI platforms—ranging from text-based chat systems to image and video generators—can enhance scientific understanding, creativity, and critical thinking in space science education. Students engage with tools such as ChatGPT, Gemini, DALL·E, and Synthesia to formulate and evaluate astronomy-related questions, generate scientifically inspired visualizations, and produce dynamic representations of cosmic phenomena. Through structured exercises, the manual promotes digital literacy, fosters analytical skills, and illustrates how AI assists in astronomical research, including data analysis, image enhancement, spacecraft autonomy, …
Atomistic Characterization Of Hydration-Dependent Fuel Cell Ionomer Nanostructure: Validation By Vibrational Spectroscopy,
2025
The University of Texas Rio Grande Valley
Atomistic Characterization Of Hydration-Dependent Fuel Cell Ionomer Nanostructure: Validation By Vibrational Spectroscopy, Dan J. Donnelly, Moon Young Yang, Nicholas Dimakis, Seung Soon Jang, William A. Goddard Iii, Eugene S. Smotkin
Physics & Astronomy Faculty Publications
The development of Nafion alternatives for fuel cells and electrolyzers requires a fundamental understanding of hydration-dependent ion-exchange site acid/base chemistry. We present here reactive force field (ReaxFF) molecular dynamics (MD) simulations of Nafion at varying molar water/ion-exchange-site ratios (λ), which we correlate to our experimental and density functional theory-based vibrational spectra. ReaxFF describes the formation and breaking of covalent bonds, enabling simulations of proton exchange between sulfonic acid/sulfonate groups and water/hydronium. Our MD simulations determine the λ-dependent equilibrium proportions of protonated and deprotonated sites. We find that protonated sites persist across all λ from 0 to 20, challenging the widely …
Gnss Technology,
2025
Utah State University
Gnss Technology, Utah State University Space Dynamics Laboratory
Space Dynamics Laboratory Publications
SDL presentation on GNSS Technology
Using Oblique, Bistatic Receptions Of Superdarn Signals To Measure Hf Propagation In The Auroral And Polar Cap Region,
2025
Space Dynamics Laboratory
Using Oblique, Bistatic Receptions Of Superdarn Signals To Measure Hf Propagation In The Auroral And Polar Cap Region, Riley Troyer, Jeffrey Holmes, Evan Thomas, Simon Shepherd, Eugene Dao, John Carilli
Space Dynamics Laboratory Publications
Experiment Geometry
Three receiver locations:
- Pituffik (formerly Thule)
- Utqiagvik (formerly Barrow)
- USCGC Healy – Beaufort Sea
Two SuperDARN locations:
- Christmas Valley (CVE, CVW)
- Iceland (ICE, ICW)
Wide Binary Orbits Are Preferentially Aligned With The Orbits Of Small Planets, But Probably Not Hot Jupiters,
2025
Swarthmore College
Wide Binary Orbits Are Preferentially Aligned With The Orbits Of Small Planets, But Probably Not Hot Jupiters, S. Christian, A. Vanderburg, J. Becker, A. L. Kraus, L. Pearce, K. A. Collins, M. Rice, Eric L.N. Jensen, D. Baker, V. Bozza, P. Benni, A. Bieryla, A. Binnenfeld, K. I. Collins, D. M. Conti, I. J. M. Crossfield, P. Evans, M. C. Johnson, E. Girardin, J. Gregorio, P. Lewin, T. Mazeh, F. Murgas, A. Panahi, F. J. Pozuelos, D. J. Radford, H. M. Relles, F. Rodriguez Frustaglia, R. P. Schwarz, G. Srdoc, C. Stockdale, T.-G. Tan, W. C. Waalkes, G. Wang, J. Wittrock, S. Zucker
Physics & Astronomy Faculty Works
Studying the relative orientations of the orbits of exoplanets and wide-orbiting binary companions (semimajor axis greater than 100 au) can shed light on how planets form and evolve in binary systems. Previous observations by multiple groups discovered a possible alignment between the orbits of visual binaries and the exoplanets that reside in them. In this study, using data from Gaia DR3 and TESS, we confirm the existence of an alignment between the orbits of small planets (R < 6 R⊕) and binary systems with semimajor axes below 700 au (p = 10⁻⁶). However, we find no statistical evidence …
