Observation Of New Particle Formation In The Northern Hemisphere At Altitude From 4 To 20 Km,
2021
University of Denver
Observation Of New Particle Formation In The Northern Hemisphere At Altitude From 4 To 20 Km, Mohamed Saad
Electronic Theses and Dissertations
New particle formation (NPF) is investigated using measurements of aerosol size distributions and meteorological variables made in two continents, including USA and Europe. Despite the considerably different aerosol particle abundances among the sites, a common relationship was found between the characteristics of NPF events and the air mass convective and/or advective transport. CO and O3 act as tracers of tropospheric and stratospheric air, respectively, their statistical relationship can be used to quantify air mass characteristics and origins. The mixing ratio values of CO increased within the upper troposphere layer before/during NPF events, which may serve as an indicator of occurring …
Compressible Hydrodynamics Of Few Body Optical Vortices,
2021
University of Denver
Compressible Hydrodynamics Of Few Body Optical Vortices, Jasmine M. Andersen
Electronic Theses and Dissertations
The ubiquity of vortices nearly rivals that of the innumerable fluids and spaces in which they live. Not only do they exist in systems such as superfluids, superconductors, optical fields, or cold atomic gases, for example, but they also exist in our atmospheres, oceans, and even in our veins. This makes understanding and accurately predicting the dynamics of vortices in various systems a relevant and meaningful endeavor.
From a typical hydrodynamic perspective, vortices move within a given fluid because of the background fluid density and phase gradients at the vortex location. However, we find that these gradients alone are insufficient …
Two-Dimensional Ferroelectricity By Design,
2021
University of Nebraska - Lincoln
Two-Dimensional Ferroelectricity By Design, Evgeny Y. Tsymbal
Evgeny Tsymbal Publications
No abstract provided.
Magnetism In Curved Geometries,
2021
University of Nebraska - Lincoln
Magnetism In Curved Geometries, R. Streubel, Evgeny Y. Tsymbal, P. Fischer
Evgeny Tsymbal Publications
No abstract provided.
Wavefront-Selective Fano Resonant Metasurface,
2021
CUNY Advanced Science Research Center
Wavefront-Selective Fano Resonant Metasurface, Adam C. Overvig, Andrea Alù
Publications and Research
Fano resonances are conventionally understood as sharp spectral features with selectivity in the momentum-frequency domain, implying that they can be excited only by plane waves with specific frequencies and incident angles. We demonstrate that Fano resonances can be made generally selective in the space-frequency domain. They can be tailored to resonate only when excited by a frequency, polarization, and wavefront of choice. This generalization reveals that Fano systems are characterized by eigenwaves that scatter to their time-reversed image upon reflection. Although in conventional Fano systems this trivially occurs for normally incident plane waves, we show that, in general, the selected …
Probing Exchange Bias At The Surface Of A Doped Ferrimagnetic Insulator,
2021
University of Delaware
Probing Exchange Bias At The Surface Of A Doped Ferrimagnetic Insulator, Yang Wang, Xiao Wang, Andy T. Clark, Hang Chen, Xuemei Cheng, John W. Freeland, John Q. Xiao
Physics Faculty Research and Scholarship
With the realization of stress-induced perpendicular magnetic anisotropy, efficient spin-orbit torque switching, and room temperature topological Hall effect, interest in rare earth iron garnets has been revived in recent years for their potential in spintronic applications. In this study, we investigate the magnetic properties of micrometer-thick Bi and Ga substituted thulium iron garnets (BiGa:TmIG) grown by the liquid-phase epitaxy method. Above the magnetization compensation (MC) temperature, anomalous triple hysteresis is observed in BiGa:TmIG/Pt heterostructures by anomalous Hall effect measurements. X-ray magnetic circular dichroism and energy dispersive spectroscopy measurements reveal its origin as an internal exchange bias (EB) effect arising from …
A Valence-Bond Operator Algebra For Quantum Spin Models And Its Applications,
2021
University of Mississippi
A Valence-Bond Operator Algebra For Quantum Spin Models And Its Applications, Huu Tran Do
Electronic Theses and Dissertations
The Heisenberg Hamiltonian is the prototype model for quantum magnetism. The Hamilto- nian includes exchange couplings between vector spins, which are the intrinsic magnetic moments of localized electrons. The classical energy between any pair of interacting spins can be minimized by aligning them parallel (ferromagnetic case) or antiparallel (antiferromagnetic), depending on the sign of the coupling. But quantum fluctuations play a key role, and a full quantum mechanical treatment of the many-body system is generally required. Finding the exact ground-state energy and wave function of isotropic antiferromagnetic (AFM) systems for an arbitrary spin-S and lattice morphology is still a challenging …
Thermally Driven Topology And The Topological Hall Effect In Chiral Magnets,
2021
University of New Hampshire
Thermally Driven Topology And The Topological Hall Effect In Chiral Magnets, Tan Dao
Honors Theses and Capstones
No abstract provided.
Transmission Zeros With Topological Symmetry In Complex Systems,
2021
CUNY Queens College
Transmission Zeros With Topological Symmetry In Complex Systems, Yuhao Kang, Azriel Genack
Publications and Research
Understanding vanishing transmission in Fano resonances in quantum systems and metamaterials and perfect and ultralow transmission in disordered media, has advanced the understanding and applications of wave interactions. Here we use analytic theory and numerical simulations to understand and control the transmission and transmission time in complex systems by deforming a medium and by adjusting the level of gain or loss. Unlike the zeros of the scattering matrix, the position and motion of the zeros of the determinant of the transmission matrix in the complex plane of frequency and field decay rate have robust topological properties. In systems without loss …
Topic Modeling And Cultural Nature Of Citations,
2021
West Virginia University
Topic Modeling And Cultural Nature Of Citations, Marie Coraline Dumaz
Graduate Theses, Dissertations, and Problem Reports (ETD)
Ever since the beginning of research journals, the number of academic publications has been increasing steadily. Nowadays, especially, with the new importance of online open-access journals and databases, research papers are more easily available to read and share. It also becomes harder to keep up with novelties and grasp an idea of the general impact of a given researcher, institution, journal, or field. For this reason, different bibliometric indicators are now routinely used to classify and evaluate the impact or significance of individual researchers, conferences, journals, or entire scientific communities. In this thesis, we provide tools to study trends in …
Regular And In-Plane Skyrmions And Antiskyrmions From Boundary Instabilities,
2021
University of Nebraska - Lincoln
Regular And In-Plane Skyrmions And Antiskyrmions From Boundary Instabilities, Shane Sandhoefner, Aldo Raeliarijaona, Rabindra Nepal, Dalton Snyder-Tinoco, Alexey Kovalev
Department of Physics and Astronomy: Faculty Publications
We formulate a theory of skyrmion and antiskyrmion generation using magnetic field and charge current pulses. We show that the topological defect can be created at an edge of a system with Dzyaloshinskii-Moriya interaction (DMI) as well as at a boundary between regions with different DMI. We consider both perpendicular and in-plane (also known as magnetic bimerons) versions of skyrmions and antiskyrmions. We show that the magnetization twist in the vicinity of an edge or a boundary is described by a kink solution, the presence of which can instigate the generation of topological defects. We study the collective excitations of …
Magnetism In Curved Geometries,
2021
University of Nebraska-Lincoln
Magnetism In Curved Geometries, Robert Streubel, Evgeny Y. Tsymbal, Peter Fischer
Robert Streubel Papers
Curvature impacts physical properties across multiple length scales, ranging from the macroscopic scale, where the shape and size vary drastically with the curvature, to the nanoscale at interfaces and inhomogeneities in materials with structural, chemical, electronic, and magnetic short-range order. In quantum materials, where correlations, entanglement, and topology dominate, the curvature opens the path to novel characteristics and phenomena that have recently emerged and could have a dramatic impact on future fundamental and applied studies of materials. Particularly, magnetic systems hosting non-collinear and topological states and 3D magnetic nanostructures strongly benefit from treating curvature as a new design parameter to …
Spin Superfluidity In Noncollinear Antiferromagnets,
2021
University of Nebraska - Lincoln
Spin Superfluidity In Noncollinear Antiferromagnets, Bo Li, Alexey Kovalev
Alexey Kovalev Papers
We explore the spin superfluid transport in exchange interaction-dominated three-sublattice antiferromagnets. The system in the long-wavelength regime is described by an SO(3) invariant field theory. Additional corrections from Dzyaloshinskii-Moriya interactions or anisotropies can break the symmetry; however, the system still approximately holds a U(1)-rotation symmetry. Thus, the power-law spatial decay signature of spin superfluidity is identified in a nonlocal-measurement setup where the spin injection is described by the generalized spin-mixing conductance. We suggest iron jarosites as promising material candidates for realizing our proposal.
Spirals And Skyrmions In Antiferromagnetic Triangular Lattices,
2021
University of Nebraska - Lincoln
Spirals And Skyrmions In Antiferromagnetic Triangular Lattices, Wuzhang Fang, Aldo Raeliarijaona, Po-Hao Chang, Alexey Kovalev, K. D. Belashchenko
Alexey Kovalev Papers
We study realizations of spirals and skyrmions in two-dimensional antiferromagnets with a triangular lattice on an inversion-symmetry-breaking substrate. As a possible material realization, we investigate the adsorption of transition-metal atoms (Cr, Mn, Fe, or Co) on a monolayer of MoS2, WS2, or WSe2 and obtain the exchange, anisotropy, and Dzyaloshinskii-Moriya interaction parameters using first-principles calculations. Using energy minimization and parallel-tempering Monte Carlo simulations, we determine the magnetic phase diagrams for a wide range of interaction parameters. We find that skyrmion lattices can appear even with weak Dzyaloshinskii-Moriya interactions, but their stability is hindered by magnetic anisotropy. However, a weak easy …
Emerging Materials For Spin-Charge Interconversion,
2021
Tsinghua University
Emerging Materials For Spin-Charge Interconversion, T. Nan, D. C. Ralph, Evgeny Y. Tsymbal, A. Manchon
Evgeny Tsymbal Publications
No abstract provided.
Defects In Ferroelectric Hfo2,
2021
Moscow Institute of Physics and Technology
Defects In Ferroelectric Hfo2, A. Chouprik, D. Negrov, Evgeny Y. Tsymbal, A. Zenkevich
Evgeny Tsymbal Publications
No abstract provided.
Interface Engineered Electron And Hole Tunneling,
2021
National University of Singapore
Interface Engineered Electron And Hole Tunneling, Rui Guo, Lingling Tao, Ming Li, Zhongran Liu, Weinan Lin, Guowei Zhou, Xiaoxin Chen, Liang Liu, Xiaobing Yan, He Tian, Evgeny Y. Tsymbal, Jingsheng Chen
Evgeny Tsymbal Publications
Although the phenomenon of tunneling has been known since the advent of quantum mechanics, it continues to enrich our understanding of many fields of science. Commonly, this effect is described in terms of electrons traversing the potential barrier that exceeds their kinetic energy due to the wave nature of electrons. This picture of electron tunneling fails, however, for tunnel junctions, where the Fermi energy lies sufficiently close to the insulator valence band, in which case, hole tunneling dominates. We demonstrate the deterministic control of electron and hole tunneling in interface-engineered Pt/BaTiO3/La0.7Sr0.3MnO3 ferroelectric tunnel …
In-Plane Quasi-Single-Domain Batio3 Via Interfacial Symmetry Engineering,
2021
University of Wisconsin-Madison
In-Plane Quasi-Single-Domain Batio3 Via Interfacial Symmetry Engineering, J. W. Lee, K. Eom, Tula R. Paudel, B. Wang, Haidong Lu, H. X. Huyan, S. Lindemann, S. Ryu, H. Lee, T. H. Kim, Y. Yuan, J. A. Zorn, W. P. Gao, Thomas Tybell, V. Gopalan, X. Q. Pan, Alexei Gruverman, L. Q. Chen, Evgeny Y. Tsymbal, Chang-Beom Eom
Evgeny Tsymbal Publications
The control of the in-plane domain evolution in ferroelectric thin films is not only critical to understanding ferroelectric phenomena but also to enabling functional device fabrication. However, in-plane polarized ferroelectric thin films typically exhibit complicated multidomain states, not desirable for optoelectronic device performance. Here we report a strategy combining interfacial symmetry engineering and anisotropic strain to design singledomain, in-plane polarized ferroelectric BaTiO3 thin films. Theoretical calculations predict the key role of the BaTiO3/PrScO3 (110)O substrate interfacial environment, where anisotropic strain, monoclinic distortions, and interfacial electrostatic potential stabilize a single-variant spontaneous polarization. A combination …
Spin-Neutral Currents For Spintronics,
2021
University of Nebraska-Lincoln
Spin-Neutral Currents For Spintronics, Ding-Fu Shao, Shu-Hui Zhang, Ming Li, Chang-Beom Eom, Evgeny Y. Tsymbal
Evgeny Tsymbal Publications
Electric currents carrying a net spin polarization are widely used in spintronics, whereas globally spin-neutral currents are expected to play no role in spin-dependent phenomena. Here we show that, in contrast to this common expectation, spin-independent conductance in compensated antiferromagnets and normal metals can be efficiently exploited in spintronics, provided their magnetic space group symmetry supports a non-spin-degenerate Fermi surface. Due to their momentum-dependent spin polarization, such antiferromagnets can be used as active elements in antiferromagnetic tunnel junctions (AFMTJs) and produce a giant tunneling magnetoresistance (TMR) effect. Using RuO2 as a representative compensated antiferromagnet exhibiting spin-independent conductance along the …
Reversal Of The Magnetoelectric Effect At A Ferromagnetic Metal/Ferroelectric Hfo2 Interface Induced By Metal Oxidation,
2021
Xiangtan University
Reversal Of The Magnetoelectric Effect At A Ferromagnetic Metal/Ferroelectric Hfo2 Interface Induced By Metal Oxidation, Zhaojin Chen, Qiong Yang, Lingling Tao, Evgeny Y. Tsymbal
Evgeny Tsymbal Publications
Multiferroic materials composed of ferromagnetic and ferroelectric components are interesting for technological applications due to sizable magnetoelectric coupling allowing the control of magnetic properties by electric fields. Due to being compatible with the silicon-based technology, HfO2-based ferroelectrics could serve as a promising component in the composite multiferroics. Recently, a strong charge-mediated magnetoelectric coupling has been predicted for a Ni/HfO2 multiferroic heterostructure. Here, using density functional theory calculations, we systematically study the effects of the interfacial oxygen stoichiometry relevant to experiments on the magnetoelectric effect at the Ni/HfO2 interface. We demonstrate that the magnetoelectric effect is very …
