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2011

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Articles 1171 - 1180 of 1180

Full-Text Articles in Physics

Superluminal Neutrinos At Opera Confront Pion Decay Kinematics, Ramanath Cowsick, Shmuel Nussinov, Utpal Sarkar Jan 2011

Superluminal Neutrinos At Opera Confront Pion Decay Kinematics, Ramanath Cowsick, Shmuel Nussinov, Utpal Sarkar

Mathematics, Physics, and Computer Science Faculty Articles and Research

Violation of Lorentz invariance (VLI) has been suggested as an explanation of the superluminal velocities of muon neutrinos reported by OPERA. In this Letter, we show that the amount of VLI required to explain this result poses severe difficulties with the kinematics of the pion decay, extending its lifetime and reducing the momentum carried away by the neutrinos. We show that the OPERA experiment limits alpha = (upsilon(v) - c)/c < 4 x 10(-6). We then take recourse to cosmic-ray data on the spectrum of muons and neutrinos generated in Earth's atmosphere to provide a stronger bound on VLI: (upsilon - c)/c < 10(-12).


Magnetic Micro-Confinement Of Quantum Degenerate Gases, Ahmed M. Abdelrahman Jan 2011

Magnetic Micro-Confinement Of Quantum Degenerate Gases, Ahmed M. Abdelrahman

Theses: Doctorates and Masters

In this dissertation we explore the basic principles of the magnetic micro-confinement of the quantum degenerate gases where the approach of the so-called two-dimensional magnetic lattices has been theoretically and experimentally investigated. In this research a new generation of two-dimensional magnetic lattice has been proposed and considered as a developing phase for the previous approaches. Its advantage relies on introducing a simplified method to create single or multiple micro-traps of magnetic field local minima distributed, at a certain working distance, above the surface of a thin film of permanent magnetic material. The simplicity in creating the magnetic field local minima …


Anisotropic Response Of Nanosized Bismuth Films Upon Femtosecond Laser Excitation Monitored By Ultrafast Electron Diffraction, Ahmed R. Esmail, Hani E. Elsayed-Ali Jan 2011

Anisotropic Response Of Nanosized Bismuth Films Upon Femtosecond Laser Excitation Monitored By Ultrafast Electron Diffraction, Ahmed R. Esmail, Hani E. Elsayed-Ali

Electrical & Computer Engineering Faculty Publications

The lattice response of 5 nm thick bismuth film to femtosecond laser excitation is probed by ultrafast electron diffraction. The transient decay time after laser excitation is greater for diffraction from (012) lattice planes compared to (110) planes and is reduced for both planes with the increased laser fluence. These results indicate that different energy coupling mechanisms to the lattice occur depending on the crystal direction. The behavior of the diffraction peak width indicates partial disorder of the film upon photoexcitation that increases together with the laser fluence. © 2011 American Institute of Physics. [doi:10.1063/1.3652919]


Physical And Electrical Characterization Of Triethanolamine Based Sensors For No₂ Detection And The Influence Of Humidity On Sensing Response, Zachariah Marcus Peterson Jan 2011

Physical And Electrical Characterization Of Triethanolamine Based Sensors For No₂ Detection And The Influence Of Humidity On Sensing Response, Zachariah Marcus Peterson

Dissertations and Theses

Triethanolamine (TEA) is a semiconducting polymer which exhibits a resistance change when exposed to various gases. The polymer also exhibits a number of reactions with nitrogen dioxide, with the reaction products being heavily dependent on the presence or absence of water vapor. Previous studies have attempted the incorporation of a TEA-carbon nanoparticle composite as the active sensing layer in a chemresistive sensor for detection of NO₂. The incorporation of carbon nanoparticles in the polymer nanocomposite was thought to amplify the sensor's response. There are a number of chemical reactions that can occur between TEA and NO₂, with the reaction products …


Energy And Environment Chronology, David Hafemeister Jan 2011

Energy And Environment Chronology, David Hafemeister

Physics

No abstract provided.


Exceptional Orthogonal Polynomials, Qhj Formalism And Swkb Quantization Condition, S Ree Ranjani, P K. Panigrahi, A Khare, A K. Kapoor, Asim Gangopadhyaya Jan 2011

Exceptional Orthogonal Polynomials, Qhj Formalism And Swkb Quantization Condition, S Ree Ranjani, P K. Panigrahi, A Khare, A K. Kapoor, Asim Gangopadhyaya

Physics: Faculty Publications and Other Works

We study the quantum Hamilton-Jacobi (QHJ) equation of the recently obtained exactly solvable models, related to the newly discovered exceptional polynomials and show that the QHJ formalism reproduces the exact eigenvalues and the eigenfunctions. The fact that the eigenfunctions have zeros and poles in complex locations leads to an unconventional singularity structure of the quantum momentum function p(x), the logarithmic derivative of the wave function, which forms the crux of the QHJ approach to quantization. A comparison of the singularity structure for these systems with the known exactly solvable and quasi-exactly solvable models reveals interesting differences. We find that the …


Quantum Transport In A Single Molecular Junction, Partha Pratim Pal Jan 2011

Quantum Transport In A Single Molecular Junction, Partha Pratim Pal

Dissertations, Master's Theses and Master's Reports - Open

The craze for faster and smaller electronic devices has never gone down and this has always kept researchers on their toes. Following Moore’s law, which states that the number of transistors in a single chip will double in every 18 months, today “30 million transistors can fit into the head of a 1.5 mm diameter pin”. But this miniaturization cannot continue indefinitely due to the ‘quantum leakage’ limit in the thickness of the insulating layer between the gate electrode and the current carrying channel. To bypass this limitation, scientists came up with the idea of using vastly available organic molecules …


Planar Magneto-Photonic And Gradient-Photonic Structures : Crystals And Metamaterials., Zhuoyuan Wu Jan 2011

Planar Magneto-Photonic And Gradient-Photonic Structures : Crystals And Metamaterials., Zhuoyuan Wu

Dissertations, Master's Theses and Master's Reports - Open

In the field of photonics, two new types of material structures, photonic crystals and metamaterials, are presently of great interest. Both are studied in the present work, which focus on planar magnetic materials in the former and planar gradient metamaterials in the latter. These planar periodic structures are easy to handle and integrate into optical systems. The applications are promising field for future optical telecommunication systems and give rise to new optical, microwave and radio technologies.

The photonic crystal part emphasizes the utilization of magnetic material based photonic crystals due to its remarkable magneto-optical characteristics. Bandgaps tuning by magnetic field …


Characterizing A Single Photon Detector, Paul N. Rojas Jan 2011

Characterizing A Single Photon Detector, Paul N. Rojas

Dissertations, Master's Theses and Master's Reports - Open

I will present my work about constructing and characterizing a single photon detector. Using the 1550nm laser and second harmonic light generation, I am able to count single photons on a Multi‐Pixel Photon Counter (MPPC) silicon APD. My results show that upwards of 22% quantum efficiency is achievable with the MPPC. Future work will include coincidence detection of correlated photon‐pair.


Four-Window Technique For Measuring Optical-Phase-Space-Time-Frequency Tomography, Rachel A. Blaser Jan 2011

Four-Window Technique For Measuring Optical-Phase-Space-Time-Frequency Tomography, Rachel A. Blaser

Dissertations, Master's Theses and Master's Reports - Open

A new approach, the four-window technique, was developed to measure optical phase-space-time-frequency tomography (OPSTFT). The four-window technique is based on balanced heterodyne detection with two local oscillator (LO) fields. This technique can provide independent control of position, momentum, time and frequency resolution. The OPSTFT is a Wigner distribution function of two independent Fourier transform pairs, phase-space and time-frequency. The OPSTFT can be applied for early disease detection.