Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Elementary Particles and Fields and String Theory (32)
- Atomic, Molecular and Optical Physics (18)
- Nuclear (17)
- Engineering (13)
- Condensed Matter Physics (10)
-
- Computer Sciences (9)
- Electrical and Computer Engineering (7)
- Optics (7)
- Chemistry (6)
- Mathematics (6)
- Applied Mathematics (5)
- Electromagnetics and Photonics (5)
- Theory and Algorithms (5)
- Engineering Physics (4)
- Other Computer Sciences (4)
- Arts and Humanities (3)
- Materials Science and Engineering (3)
- Medical Biophysics (3)
- Medical Sciences (3)
- Medicine and Health Sciences (3)
- Other Physics (3)
- Philosophy (3)
- Physical Chemistry (3)
- Social and Behavioral Sciences (3)
- Biochemistry, Biophysics, and Structural Biology (2)
- Biophysics (2)
- Education (2)
- Institution
-
- Old Dominion University (30)
- City University of New York (CUNY) (12)
- Chapman University (7)
- Louisiana State University (6)
- University of Nebraska - Lincoln (5)
-
- University of Arkansas, Fayetteville (4)
- University of Mississippi (4)
- California Polytechnic State University, San Luis Obispo (3)
- University of New Mexico (2)
- University of Tennessee Health Science Center (2)
- Virginia Commonwealth University (2)
- American University in Cairo (1)
- Bridgewater State University (1)
- Calvin University (1)
- East Tennessee State University (1)
- Fordham University (1)
- Illinois Math and Science Academy (1)
- Illinois State University (1)
- Kennesaw State University (1)
- Macalester College (1)
- Missouri State University (1)
- Portland State University (1)
- Rose-Hulman Institute of Technology (1)
- Technological University Dublin (1)
- The University of Akron (1)
- University of Central Florida (1)
- University of Kentucky (1)
- University of Louisville (1)
- Washington University in St. Louis (1)
- Wayne State University (1)
- Keyword
-
- Quantum chromodynamics (6)
- Lattice QCD (5)
- QCD in nuclear reactions (5)
- Perturbative QCD (4)
- Quantum mechanics (4)
-
- Cold atoms (3)
- Lattice field theory (3)
- Lepton induced nuclear reactions (3)
- Quantum computing (3)
- Quantum information (3)
- Quantum optics (3)
- Spectroscopy (3)
- Strong interaction (3)
- Causal Sets (2)
- Compton scattering (2)
- Consciousness (2)
- Electroweak interactions in nuclear physics (2)
- Entanglement (2)
- Factorization (2)
- Form factors (2)
- Hadron-hadron interactions (2)
- Hydrogen (2)
- Lattice field theory simulation (2)
- Machine learning (2)
- Nuclear (2)
- Nuclear physics (2)
- Particle interactions (2)
- Phenomenology (2)
- Photonuclear reactions (2)
- Photovoltaics (2)
- Publication
-
- Physics Faculty Publications (26)
- LSU Doctoral Dissertations (6)
- Mathematics, Physics, and Computer Science Faculty Articles and Research (6)
- Publications and Research (6)
- Graduate Theses and Dissertations (3)
-
- Honors Theses (3)
- Theses and Dissertations (3)
- Advanced Science Research Center (2)
- Alexey Kovalev Papers (2)
- Department of Physics and Astronomy: Faculty Publications (2)
- Dissertations and Theses (2)
- Dissertations, Theses, and Capstone Projects (2)
- Electronic Theses and Dissertations (2)
- Faculty Publications (2)
- Physics (2)
- Physics Theses & Dissertations (2)
- Annual Symposium on Biomathematics and Ecology Education and Research (1)
- Articles (1)
- Capstone and Graduation Projects (1)
- Computational and Data Sciences (PhD) Dissertations (1)
- Department of Electrical and Computer Engineering: Faculty Publications (1)
- Electrical & Computer Engineering Faculty Publications (1)
- Graduate Program in International Studies Theses & Dissertations (1)
- Graduate Theses, Dissertations, and Problem Reports (ETD) (1)
- Graduate Theses/Dissertations (1)
- Honors Program Theses and Projects (1)
- Honors Undergraduate Theses (1)
- Journal of Wellness (1)
- Macalester Journal of Physics and Astronomy (1)
- Master of Science in Chemical Sciences Theses (1)
- Publication Type
Articles 91 - 98 of 98
Full-Text Articles in Quantum Physics
Breakdown Of Universal Scaling For Nanometer-Sized Bubbles In Graphene, Renan Villarreal, Pin-Cheng Lin, Fahim Faraji, Nasim Hassani, Harsh Bana, Zviadi Zarkua, Maya N. Nair, Hung-Chieh Tsai, Manuel Auge, Felix Junge, Hans C. Hofsaess, Stefan De Gendt, Steven De Feyter, Steven Brems, E. Harriet Åhlgren, Erik C. Neyts, Lucian Covaci, FrançOis M. Peeters, Mehdi Neek-Amal, Lino M. C. Pereira
Breakdown Of Universal Scaling For Nanometer-Sized Bubbles In Graphene, Renan Villarreal, Pin-Cheng Lin, Fahim Faraji, Nasim Hassani, Harsh Bana, Zviadi Zarkua, Maya N. Nair, Hung-Chieh Tsai, Manuel Auge, Felix Junge, Hans C. Hofsaess, Stefan De Gendt, Steven De Feyter, Steven Brems, E. Harriet Åhlgren, Erik C. Neyts, Lucian Covaci, FrançOis M. Peeters, Mehdi Neek-Amal, Lino M. C. Pereira
Advanced Science Research Center
We report the formation of nanobubbles on graphene with a radius of the order of 1 nm, using ultralow energy implantation of noble gas ions (He, Ne, Ar) into graphene grown on a Pt(111) surface. We show that the universal scaling of the aspect ratio, which has previously been established for larger bubbles, breaks down when the bubble radius approaches 1 nm, resulting in much larger aspect ratios. Moreover, we observe that the bubble stability and aspect ratio depend on the substrate onto which the graphene is grown (bubbles are stable for Pt but not for Cu) and trapped element. …
Role Of Boundary Conditions In Quantum Computations Of Scattering Observables, Raúl A. Briceño, Juan V. Guerrero, Maxwell T. Hansen, Alexandru M. Sturzu
Role Of Boundary Conditions In Quantum Computations Of Scattering Observables, Raúl A. Briceño, Juan V. Guerrero, Maxwell T. Hansen, Alexandru M. Sturzu
Physics Faculty Publications
Quantum computing may offer the opportunity to simulate strongly interacting field theories, such as quantum chromodynamics, with physical time evolution. This would give access to Minkowski-signature correlators, in contrast to the Euclidean calculations routinely performed at present. However, as with present-day calculations, quantum computation strategies still require the restriction to a finite system size, including a finite, usually periodic, spatial volume. In this work, we investigate the consequences of this in the extraction of hadronic and Compton-like scattering amplitudes. Using the framework presented in Briceno et al. [Phys. Rev. D 101, 014509 (2020)], we estimate the volume effects for various …
P-Wave Nucleon-Pion Scattering Amplitude In The Δ(1232) Channel From Lattice Qcd, Giorgio Silvi, Srijit Paul, Constantia Alexandrou, Stefan Krieg, Luka Leskovec, Stefan Meinel, John Negele, Marcus Petschlies, Andrew Pochinsky, Gumaro Rendon, Sergey Syritsyn, Antonio Todaro
P-Wave Nucleon-Pion Scattering Amplitude In The Δ(1232) Channel From Lattice Qcd, Giorgio Silvi, Srijit Paul, Constantia Alexandrou, Stefan Krieg, Luka Leskovec, Stefan Meinel, John Negele, Marcus Petschlies, Andrew Pochinsky, Gumaro Rendon, Sergey Syritsyn, Antonio Todaro
Physics Faculty Publications
We determine the Δ(1232) resonance parameters using lattice QCD and the Lüscher method. The resonance occurs in elastic pion-nucleon scattering with JP = 3/2+ in the isospin I=3/2, P-wave channel. Our calculation is performed with Nf = 2+1 flavors of clover fermions on a lattice with L ≈ 2.8 fm. The pion and nucleon masses are mπ = 255.4 (1.6) MeV and mN = 1073(5) MeV, respectively, and the strong decay channel Δ → πN is found to be above the threshold. To thoroughly map out the energy dependence of the nucleon-pion …
Reflection And Transmission Of Electromagnetic Pulses At A Planar Dielectric Interface: Theory And Quantum Lattice Simulations, Abhay K. Ram, George Vahala, Linda Vahala, Min Soe
Reflection And Transmission Of Electromagnetic Pulses At A Planar Dielectric Interface: Theory And Quantum Lattice Simulations, Abhay K. Ram, George Vahala, Linda Vahala, Min Soe
Electrical & Computer Engineering Faculty Publications
There is considerable interest in the application of quantum information science to advance computations in plasma physics. A particular point of curiosity is whether it is possible to take advantage of quantum computers to speed up numerical simulations relative to conventional computers. Many of the topics in fusion plasma physics are classical in nature. In order to implement them on quantum computers, it will require couching a classical problem in the language of quantum mechanics. Electromagnetic waves are routinely used in fusion experiments to heat a plasma or to generate currents in the plasma. The propagation of electromagnetic waves is …
Topics In Quantum Quench And Entanglement, Sinong Liu
Topics In Quantum Quench And Entanglement, Sinong Liu
Theses and Dissertations--Physics and Astronomy
The dissertation includes two parts.
In Part I, we study non-equilibrium phenomena in various models associated with global quantum quench. It is known that local quantities, when subjected to global quantum quench across or approaching critical points, exhibit a variety of universal scaling behaviors at various quench rates. To investigate if similar scaling holds for non-local quantities, we consider the scaling behavior of circuit complexity under quantum quench across the critical massless point in Majorana fermion field theory of the one-dimensional integrable transverse field Ising model and find it obeys such scaling. To investigate if similar scaling holds for non-relativistic …
Equations Of State For Warm Dense Carbon From Quantum Espresso, Derek J. Schauss
Equations Of State For Warm Dense Carbon From Quantum Espresso, Derek J. Schauss
Theses and Dissertations
Warm dense plasma is the matter that exists, roughly, in the range of 10,000 to 10,000,000 Kelvin and has solid-like densities, typically between 0.1 and 10 grams per centimeter. Warm dense fluids like hydrogen, helium, and carbon are believed to make up the interiors of many planets, white dwarfs, and other stars in our universe. The existence of warm dense matter (WDM) on Earth, however, is very rare, as it can only be created with high-energy sources like a nuclear explosion. In such an event, theoretical and computational models that accurately predict the response of certain materials are thus very …
Ligand Effects On Electronic, Magnetic, And Catalytic Properties Of Clusters And Cluster Assemblies, Dinesh Bista 9288522
Ligand Effects On Electronic, Magnetic, And Catalytic Properties Of Clusters And Cluster Assemblies, Dinesh Bista 9288522
Theses and Dissertations
Ligands commonly protect metallic clusters against reacting with outside reactants. However, ligands can also be used to control the redox properties enabling the formation of super donors/acceptors that can donate/accept multiple electrons. This thesis focuses on how the ligands can be used to control the electronic and magnetic features of clusters and ligand stabilized cluster-based assemblies, leading to nano pn junctions with directed transport, the possibility of light-harvesting, and catalysts for cross-coupling reactions. The thesis addresses three distinct classes of clusters and their applications. The first class of cluster “metal chalcogen clusters” is the central idea of the thesis focused …
Calabi-Yau Products: Graded Quivers For General Toric Calabi-Yaus, Sebastián Franco, Azeem Hasan
Calabi-Yau Products: Graded Quivers For General Toric Calabi-Yaus, Sebastián Franco, Azeem Hasan
Publications and Research
The open string sector of the topological B-model on CY (m + 2)-folds is described by m-graded quivers with superpotentials. This correspondence generalizes the connection between CY (m + 2)-folds and gauge theories on the worldvolume of D(5 − 2m)-branes for m = 0, . . . , 3 to arbitrary m. In this paper we introduce the Calabi-Yau product, a new algorithm that starting from the known quiver theories for a pair of toric CYm+2 and CYn+2 produces the quiver theory for a related CYm+n+3 …