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Physics of the Interaction of Charged Particles with Nuclei
Physics of the Interaction of Charged Particles with Nuclei

... comprehensive theory which could describe all the experimentally observed properties of particle-nucleus interaction from the first principles. This is a consequence of the complexity of the nucleus as a physical object. Even in case the nucleon-nucleon interaction force would be known, and it would ...
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Chapter 3 Interaction of Strong Laser Fields with - diss.fu

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Factorization Method and the Position

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... element. This exchange term arises whenever the system occupies different quantum states which have spatial overlap @14#. g (2) (0)51 implies that the system can be described locally by a single wave function, but it does not rule out the population of numerous nonoverlapping quantum states. The fac ...
Formation of molecular ions by radiative association of cold
Formation of molecular ions by radiative association of cold

Historical Review of Quantum Mechanics
Historical Review of Quantum Mechanics

Photoelectric effect
Photoelectric effect

... then be accelerated away again at the track ends. The surface is approximately frictionless so the glider travels at constant speed once it is no longer in contact with the end springs. The x probability density, P, is shown opposite, the dotted lines show the ends of the air track. The probability ...
Prof.P. Ravindran, Sommerfield Model for Free Electron Theory
Prof.P. Ravindran, Sommerfield Model for Free Electron Theory

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Stabilization of circular Rydberg atoms by circularly - BORA

Applications of Supersymmetric Quantum
Applications of Supersymmetric Quantum

... Supersymmetric quantum mechanics (SUSY QM) was originally developed as a model for testing quantum field theory methods, but it was soon clear that this field was interesting in its own right. Gradually a whole technology was evolved based on SUSY to understand the solvable potential problems and ev ...
Molecular Modelling for Beginners
Molecular Modelling for Beginners

... There are a number of classic (and hard) texts in the field; if I’m stuck with a basic molecular quantum mechanics problem, I usually reach for Eyring, Walter and Kimball’s Quantum Chemistry, but the going is rarely easy. I make frequent mention of this volume throughout the book. Equally, there are ...
Post Print Electronic structure and chemical bonding in Ti2AlC
Post Print Electronic structure and chemical bonding in Ti2AlC

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... Boundary conditions are applied to determine the allowed states of the system In the model of a particle under boundary conditions, an interaction of a particle with its environment represents one or more boundary conditions and, if the interaction restricts the particle to a finite region of space, ...
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Dilute Magnetic Semiconductor Solid Solutions of Zinc Cobalt

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Why dynamics?

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Effect of loss on the topological features of dimer chain described by

... degenerate zero energy edge states are the edge states. Then we will explore the robustness of zero energy edge states against the disorders on the chain. Four kinds of disorders are considered: intra-cell hopping disorders, inter-cell hopping disorders, on-site disorders and nonHermitian disorders. ...
Introduction to the Fractional Quantum Hall Effect
Introduction to the Fractional Quantum Hall Effect

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The harmonic oscillator in quantum mechanics: A third way F. Marsiglio
The harmonic oscillator in quantum mechanics: A third way F. Marsiglio

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Quantum Tweezer for Atoms

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Absence of spin liquid in non-frustrated correlated systems

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... energy gap decreases from 4.6 eV for pure h-BN to zero for pure graphene, with a sudden drop to <2:0 eV following the introduction of a single C row, as observed in previous work [5]. For a given composition, the two cases with different number of atom rows give different band gap values; the same b ...
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Vapor REPORTS Observation Condensation

... the detailed properties of the macroscopic quantum state and allow only a small fraction of the particles to occupy the Bose condensed state. Recently, evidence of Bose condensation in a gas of excitons in a semiconductor host has been reported (5). The interactions in these systems are weak but poo ...
Theoretical Modeling of Molar Volume and Thermal Expansion
Theoretical Modeling of Molar Volume and Thermal Expansion

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Tight binding

In solid-state physics, the tight-binding model (or TB model) is an approach to the calculation of electronic band structure using an approximate set of wave functions based upon superposition of wave functions for isolated atoms located at each atomic site. The method is closely related to the LCAO method used in chemistry. Tight-binding models are applied to a wide variety of solids. The model gives good qualitative results in many cases and can be combined with other models that give better results where the tight-binding model fails. Though the tight-binding model is a one-electron model, the model also provides a basis for more advanced calculations like the calculation of surface states and application to various kinds of many-body problem and quasiparticle calculations.
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