Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Condensed Matter Physics (21)
- Optics (15)
- Atomic, Molecular and Optical Physics (6)
- Statistical, Nonlinear, and Soft Matter Physics (5)
- Elementary Particles and Fields and String Theory (4)
-
- Other Physics (4)
- Chemistry (3)
- Engineering Physics (3)
- Mathematics (2)
- Algebra (1)
- Computational Chemistry (1)
- Engineering (1)
- Fluid Dynamics (1)
- Geometry and Topology (1)
- Inorganic Chemistry (1)
- Materials Chemistry (1)
- Materials Science and Engineering (1)
- Nuclear (1)
- Organic Chemistry (1)
- Other Mathematics (1)
- Other Statistics and Probability (1)
- Physical Chemistry (1)
- Semiconductor and Optical Materials (1)
- Statistics and Probability (1)
- Keyword
-
- Entanglement (3)
- Excitons (3)
- Light-matter interactions (2)
- Machine learning (2)
- Plasmonics (2)
-
- Quantum information theory (2)
- Spectroscopy (2)
- 2D materials (1)
- 4d Wess-Zumino-Witten theory (1)
- AI (1)
- Acoustic crystalline insulator (1)
- BEC (1)
- Black phosphorus (1)
- Bose Einstein Condensate (1)
- Bose Einstein condensate (1)
- Casimir effect (1)
- Category theory (1)
- Charge Dynamics (1)
- Charge transport (1)
- Circular Polarization (1)
- Cloning; discrimination; implementation; quantum; realization; separation (1)
- Color Glass Condensate (1)
- Complex projective space (1)
- Conjugated Polymer (1)
- Cryogenic (1)
- DEHPPV (1)
- Dark Exciton (1)
- Density matrix (1)
- Detectors (1)
- Doped topological insulators (1)
Articles 31 - 37 of 37
Full-Text Articles in Quantum Physics
N-Representability In The Quantum Kernel Energy Method, Walter Polkosnik
N-Representability In The Quantum Kernel Energy Method, Walter Polkosnik
Dissertations, Theses, and Capstone Projects
The Kernel Energy Method (KEM) delivers accurate full molecule energies using less computational resources than standard ab-initio quantum chemical approaches. KEM achieves this efficiency by decomposing a system of atoms into disjoint subsets called kernels. The results of full ab-initio calculations on each individual single kernel and on each double kernel formed by the union of each pair of single kernels are combined in an equation of a form that is specific to KEM to provide an approximation to the full molecule energy. KEM has been demonstrated to give accurate molecular energies over a wide range of systems, chemical methods …
Finding Paths Via Quantum Systems And Its Application For Quantum Algorithms, Daniel S. Koch
Finding Paths Via Quantum Systems And Its Application For Quantum Algorithms, Daniel S. Koch
Dissertations, Theses, and Capstone Projects
The field of Quantum Information Theory provides the theoretical foundation for the pursuit of quantum computers. The ongoing questions of how quantum computers will be realized and what they will achieve, are both very uncertain. However, worldwide efforts are beginning to converge on some answers, and the future of quantum computers is looking brighter than ever. In contribution to the grand goal that is quantum computing, this thesis serves as a demonstration to the usefulness of quantum over classical computing. The central theme of my work, and my collaborators, is the exploration of using quantum systems as a tool for …
Quantum Optical Interferometry And Quantum State Engineering, Richard J. Birrittella Jr
Quantum Optical Interferometry And Quantum State Engineering, Richard J. Birrittella Jr
Dissertations, Theses, and Capstone Projects
We highlight some of our research done in the fields of quantum optical interferometry and quantum state engineering. We discuss the body of work for which our research is predicated, as well as discuss some of the fundamental tenants of the theory of phase estimation. We do this in the context of quantum optical interferometry where our primary interest lies in the calculation of the quantum Fisher information as it has been shown that the minimum phase uncertainty obtained, the quantum Cramer-Rao bound, is saturated by parity-based detection methods. We go on to show that the phase uncertainty one obtains …
Some 2-Categorical Aspects In Physics, Arthur Parzygnat
Some 2-Categorical Aspects In Physics, Arthur Parzygnat
Dissertations, Theses, and Capstone Projects
2-categories provide a useful transition point between ordinary category theory and infinity-category theory where one can perform concrete computations for applications in physics and at the same time provide rigorous formalism for mathematical structures appearing in physics. We survey three such broad instances. First, we describe two-dimensional algebra as a means of constructing non-abelian parallel transport along surfaces which can be used to describe strings charged under non-abelian gauge groups in string theory. Second, we formalize the notion of convex and cone categories, provide a preliminary categorical definition of entropy, and exhibit several examples. Thirdly, we provide a universal description …
Theoretical Analysis Of Single Molecule Spectroscopy Lineshapes Of Conjugated Polymers, Murali Devi
Theoretical Analysis Of Single Molecule Spectroscopy Lineshapes Of Conjugated Polymers, Murali Devi
Dissertations, Theses, and Capstone Projects
Conjugated Polymers(CPs) exhibit a wide range of highly tunable optical properties. Quantitative and detailed understanding of the nature of excitons responsible for such a rich optical behavior has significant implications for better utilization of CPs for more efficient plastic solar cells and other novel optoelectronic devices. In general, samples of CPs are plagued with substantial inhomogeneous broadening due to various sources of disorder. Single molecule emission spectroscopy (SMES) offers a unique opportunity to investigate the energetics and dynamics of excitons and their interactions with phonon modes. The major subject of the present thesis is to analyze and understand room temperature …
Zncdmgse As A Materials Platform For Advanced Photonic Devices: Broadband Quantum Cascade Detectors And Green Semiconductor Disk Lasers, Joel De Jesus
Zncdmgse As A Materials Platform For Advanced Photonic Devices: Broadband Quantum Cascade Detectors And Green Semiconductor Disk Lasers, Joel De Jesus
Dissertations, Theses, and Capstone Projects
The ZnCdMgSe family of II-VI materials has unique and promising characteristics that may be useful in practical applications. For example they can be grown lattice matched to InP substrates with lattice matched bandgaps that span from 2.1 to 3.5 eV, they can be successfully doped n-type, have a large conduction band offset (CBO) with no intervalley scattering present when strained, they have lower average phonon energies, and the InP lattice constant lies in the middle of the ZnSe and CdSe binaries compounds giving room to experiment with tensile and compressive stress. However they have not been studied in detail for …
Optimal Measurements Tasks And Their Physical Realizations, Vadim Yerokhin
Optimal Measurements Tasks And Their Physical Realizations, Vadim Yerokhin
Dissertations, Theses, and Capstone Projects
This thesis reflects works previously published by the author and materials hitherto unpublished on the subject of quantum information theory. Particularly, results in optimal discrimination, cloning, and separation of quantum states, and their relationships, are discussed.
Our interest lies in the scenario where we are given one of two quantum states prepared with a known a-priori probability. We are given full information about the states and are assigned the task of performing an optimal measurement on the incoming state. Given that none of these tasks is in general possible to perform perfectly we must choose a figure of merit to …