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Topological Hunds rules and the electronic properties of a triple
Topological Hunds rules and the electronic properties of a triple

... this system onto those of the three-spin Heisenberg model. Scarola and Das Sarma33 used the Hubbard, variational, and exact diagonalization approaches to demonstrate that this mapping can be carried out only for a limited range of triple-dot parameters. Mizel and Lidar34,35,36 arrived at similar con ...
Interference of Bose#Einstein Condensates†
Interference of Bose#Einstein Condensates†

Two-Dimensional Mott-Hubbard Electrons in an Artificial
Two-Dimensional Mott-Hubbard Electrons in an Artificial

The theory of flowing electrons - the STM and beyond
The theory of flowing electrons - the STM and beyond

Electron Diffraction study of Layer Structures in La-Mg
Electron Diffraction study of Layer Structures in La-Mg

Wednesday, March 3, 2010
Wednesday, March 3, 2010

... 6.7: Barriers and Tunneling ...
Cooling and Trapping Neutral Atoms
Cooling and Trapping Neutral Atoms

... atoms, and molecules Such systems have become an ultralow-temperature laboratory for atom optics and collisional physics, and also for many-body physics that encompasses phenomena as phonons, superfluidity, quantized vortices, Josephson junctions, and quantum phase transitions. Most of our results i ...
NAME: Answer Table for the Multiple
NAME: Answer Table for the Multiple

An effective quantum defect theory for the diamagnetic spectrum of a
An effective quantum defect theory for the diamagnetic spectrum of a

Lattice QCD in Mainland China: Status and Perspectives
Lattice QCD in Mainland China: Status and Perspectives

Adaptive Wave Models for Sophisticated Option Pricing
Adaptive Wave Models for Sophisticated Option Pricing

... Adaptive wave model for financial option pricing is proposed, as a high-complexity alternative to the standard Black-Scholes model. The new option-pricing model, representing a controlled Brownian motion, includes two wave-type approaches: nonlinear and quantum, both based on (adaptive form of) the ...
Supersymmetric Quantum Mechanics
Supersymmetric Quantum Mechanics

Close-coupling study of rotational energy transfer of CO(v=2) by
Close-coupling study of rotational energy transfer of CO(v=2) by

... Very recently, Carty et al. [5] reported experimental rate coefficients and thermally averaged cross sections at different temperatures for RET in collisions between CO(v=2, j=0, 1, 4, and 6) and He using the infrared-vacuum ultraviolet double resonance technique. The measurements provide the most e ...
Quantum Mechanical
Quantum Mechanical

Orbital Analogue of the Quantum Anomalous Hall
Orbital Analogue of the Quantum Anomalous Hall

... gauge potential generated by laser beams [23–27]. Recently, a construction of Haldane’s model has also been proposed [25] by superposing a periodic lightinduced gauge potential with a honeycomb optical lattice. In this article, we propose an orbital analogue of the quantum anomalous Hall (QAH) effec ...
Wave equation with energy-dependent potentials for confined systems
Wave equation with energy-dependent potentials for confined systems

Quantum Mechanics Lecture 8: Relativistic Quantum Mechanics
Quantum Mechanics Lecture 8: Relativistic Quantum Mechanics

... it has an important physical implication: we can apply the KFG equation only to particles which are described by scalar or pseudoscalar wave functions. Such particles do exist, for instance pions and kaons, which are pseudoscalar particles, but electrons are not scalar particles and their wave funct ...
Bose-Einstein condensation
Bose-Einstein condensation

... new route to ultracold temperatures that does not involve cryogenics. Atoms at sub-millikelvin temperatures are now routinely used in a variety of experiments. Alkali atoms are well suited to laser-based methods because their optical transitions can be excited by available lasers and because they ha ...
Dynamics of Entanglement for Two-Electron Atoms
Dynamics of Entanglement for Two-Electron Atoms

... The study of quantum entanglement for systems with continuous degrees of freedom possess a number of extra problems when they are compared with systems with discrete degrees of freedom. One particularly acute is the lack of exact solutions. The existence of exact solutions has contributed enormously ...
Quantum no and orbitals
Quantum no and orbitals

Nonlinear atom optics - University of Arizona
Nonlinear atom optics - University of Arizona

... ways to manipulate atomic trajectories. These include the use of evanescent waves acting as atomic mirrors, standing waves of light serving as diffraction gratings, internal-atomic-state transitions enabling novel atomic beam splitters, and configurable optical fields for the creation of atomic trap ...
Atomic Physics - Oxford Physics
Atomic Physics - Oxford Physics

... case, for most of the time, a major part of the repulsion between one electron and the others acts towards the centre. So we replace the 1/r, hydrogen-like, potential with an effective potential due to the nucleus and the centrally acting part of the 1/rij repulsion term. We call this the Central Fi ...
Lecture 9 - Scattering and tunneling for a delta
Lecture 9 - Scattering and tunneling for a delta

Wave Function as Geometric Entity
Wave Function as Geometric Entity

... other zero we can obtain the Dirac spinor with four element. With the help this column can reproduce spinor presentation every Clifford number. Exist full correspondence between the spinor column and the elements of an exterior algebra. Next we would like determine the rule of comparing two Clifford ...
Nature physics
Nature physics

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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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