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Jens Juul Rasmussen
Jens Juul Rasmussen

... demonstrate, that the trapping of particles in and subsequent displacement with the vortex structures leads to an anomalous diffusion with super diffusive behaviour in the zonal direction and sub diffusive behaviour in the radial direction. Furthermore, we have investigated the turbulent flux origin ...
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20071031110012301

... ► Factorization of three-particle world-sheet S-matrix in near-flat AdS5 x S5 to one loop in string σ-model ...
Rubidium 87 D Line Data 1 Introduction Daniel A. Steck
Rubidium 87 D Line Data 1 Introduction Daniel A. Steck

... ω0 − ω where ω0 is the resonant frequency of the lowest-energy transition (i.e., the D1 resonance); this approximate expression is valid for light tuned far to the red of the D1 line. The 87 Rb polarizabilities are tabulated in Table 6. Notice that the differences in the excited state and ground stat ...
F34TPP Theoretical Particle Physics notes by Paul Saffin Contents
F34TPP Theoretical Particle Physics notes by Paul Saffin Contents

... The typical shower of particles produced by a cosmic ray. . . . . . . . . . . . . . This shows a superconductor hovering above a magnet. . . . . . . . . . . . . . . A typical wine bottle, where the dregs of the wine tend to form at the bottom, around the circular minimum. . . . . . . . . . . . . . . ...
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chapter 5

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112, 110404 (2014)

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A primary x-ray investigation of the turning of ferroelectric

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Module 2 : Electrostatics Lecture 6 : Quantization Of Charge

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Physics - Electric Fields

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Spin-Orbit-Mediated Anisotropic Spin Interaction in Interacting Electron Systems

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Magnetically Induced Reconstruction of the Ground State in a Few-Electron...

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Entanglement in a solid-state spin ensemble

... donors in isotopically engineered semiconductors are of particular interest as they possess excellent decoherence characteristics (both the electron and the nuclear coherence times, T2, exceed seconds11,12), can be controlled with high fidelity using microwave and radiofrequency pulses13,14, and are ...
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... appeared for liquid, solid metallic glasses. It is supposed, that the atoms considered as solid spheres located on tops of empty polyhedrons (simplexes), which edges are formed by bonding between the next atoms. Lengths of edges can change approximately within the bounds of 15%. Thus, the free ...
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Electrospray Operation Using Nitrogen in Place of Air Application

Electrospray Operation Using Nitrogen in Place of Air
Electrospray Operation Using Nitrogen in Place of Air

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Niels Bohr - Nobel Lecture

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... Copernicus, a monk, physician, and philosopher, did not believe that the God’s creation could be so unnatural and complicated. He revived Aristarchus’ idea that the Sun, not the Earth, was stationary and that Earth was just another one of the planets circling the Sun. His opponents raised arguments, ...
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Low-Energy (20 eV) and High-Energy (1000 eV) Electron

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Electron scattering



Electron scattering occurs when electrons are deviated from their original trajectory. This is due to the electrostatic forces within matter interaction or, if an external magnetic field is present, the electron may be deflected by the Lorentz force. This scattering typically happens with solids such as metals, semiconductors and insulators; and is a limiting factor in integrated circuits and transistors.The application of electron scattering is such that it can be used as a high resolution microscope for hadronic systems, that allows the measurement of the distribution of charges for nucleons and nuclear structure. The scattering of electrons has allowed us to understand that protons and neutrons are made up of the smaller elementary subatomic particles called quarks.Electrons may be scattered through a solid in several ways:Not at all: no electron scattering occurs at all and the beam passes straight through.Single scattering: when an electron is scattered just once.Plural scattering: when electron(s) scatter several times.Multiple scattering: when electron(s) scatter very many times over.The likelihood of an electron scattering and the proliferance of the scattering is a probability function of the specimen thickness to the mean free path.
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