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Lecture 5, Conservation Laws, Isospin and Parity
Lecture 5, Conservation Laws, Isospin and Parity

Trajectory-Based Coulomb-Corrected Strong Field
Trajectory-Based Coulomb-Corrected Strong Field

Density functional theory and nuclear quantum effects
Density functional theory and nuclear quantum effects

Quantum wires in one dimension: disorder,electronic transportand
Quantum wires in one dimension: disorder,electronic transportand

... These states are completely extended over the system. Will the properties of the system and the nature of the eigenstates change in the presence of disorder? An approach to the problem of disorder was originally made in one-dimensional systems (see reference [135] for a collection of the first works ...
Three Dimensional View of the SYK/AdS Duality
Three Dimensional View of the SYK/AdS Duality

here
here

...  Recall the tight-Binding Hamiltonian  Why is this a p-wave superconductor?  For the so-called s-, p-, d- or f-wave ...
Get PDF - OSA Publishing
Get PDF - OSA Publishing

Th tical lifetime eore Positronium:  A
Th tical lifetime eore Positronium: A

... Positronium formation occurs in non-metallic solids and liquids. It has a lifetime characteristic of the size and shape of the cavity in which it settles. This behavior is used to obtain information about polymers, liquid crystals, solid-solid and solid-liquid transitions, and molecular crystals. Po ...
Enhancement of Tunneling from a Correlated 2D Electron System
Enhancement of Tunneling from a Correlated 2D Electron System

... systems display strong effects of the electron-electron interaction, including those specifically related to electron correlations [1,2]. They show up dramatically in various unusual transport properties. One of the most broadly used techniques for investigating many-electron effects is tunneling [3 ...
Interacting Fermionic Atoms in Optical Lattices
Interacting Fermionic Atoms in Optical Lattices

... During the optimization of the laice wavelength we studied the photodissociation of Feshba molecules by blue-detuned light in order to aieve a low enough heating rate to perform equilibrium experiments in the laice, the results are given in the appendix (cf. sec. A). is thesis is linked to the ...
Time Reversal and Unitary Symmetries
Time Reversal and Unitary Symmetries

Controlled Coupling and Occupation of Silicon Atomic Quantum Dots
Controlled Coupling and Occupation of Silicon Atomic Quantum Dots

Wick Rotation as a New Symmetry
Wick Rotation as a New Symmetry

Hamiltonian dynamics
Hamiltonian dynamics

Relativistic Effects in Atomic Spectra
Relativistic Effects in Atomic Spectra

... solvable generally. In electrodynamics, also the two-body case has become unsolvable. When quantum mechanics was emerging, new phenomena and paradoxes have occurred and one-particle systems needed to be discussed anew. Today, in quantum field theory or string theory representing modern physics, we a ...
Circuit Quantum Electrodynamics with Transmon Qubits in
Circuit Quantum Electrodynamics with Transmon Qubits in

Interaction-based nonlinear quantum metrology with a cold atomic ensemble
Interaction-based nonlinear quantum metrology with a cold atomic ensemble

... are waves. Conversely, there are interferometers which work with particles, atoms for example, as probes [Baudon et al., 1999; Cronin et al., 2009]. The wave-like behavior of atoms only can be understood in the framework of the wave-particle duality, which is at the basis of the quantum interpretati ...
Schrödinger Cat State Atomic Interferometer with Heisenberg
Schrödinger Cat State Atomic Interferometer with Heisenberg

Mean-field theory of the Kondo effect in quantum dots with... Mikio Eto and Yuli V. Nazarov
Mean-field theory of the Kondo effect in quantum dots with... Mikio Eto and Yuli V. Nazarov

... The mean field theory of the Kondo effect was pioneered by Yoshimori and Sakurai29 and is commonly used for the Kondo lattice model.30 It is useful to capture main qualitative features of the Kondo effect; renormalizability at the scale of T K , resonances at the Fermi level, and resonant transmissi ...
Interlayer coupling in Co/Si sandwich structures
Interlayer coupling in Co/Si sandwich structures

student perception and conceptual development as
student perception and conceptual development as

The Quantum Hall Effect: Novel Excitations and Broken Symmetries
The Quantum Hall Effect: Novel Excitations and Broken Symmetries

... described by fractional quantum numbers, including fractional charge and fractional statistics that are intermediate between ordinary Bose and Fermi statistics. The FQHE has proven to be a rich and surprising arena for the testing of our understanding of strongly correlated quantum systems. With a s ...
Explicit Polarization Theory - Comp Chem
Explicit Polarization Theory - Comp Chem

... Despite the successes of molecular mechanics,28,50,51 there are also a number of limitations: there is no general approach to treat the coupling of internal degrees freedom, the treatment of electronic polarization is difficult, intermolecular charge transfer is neglected, excited electronic states ...
CHROMIUM
CHROMIUM

A Short Course on Topological Insulators
A Short Course on Topological Insulators

... simple mathematical tools as possible. We restricted our attention to one- and twodimensional band insulators. We use noninteracting lattice models of topological insulators, and build these up gradually to arrive from the simplest one-dimensional case (the Su-Schrieffer-Heeger model for polyacetyle ...
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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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