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localization of light - University of Toronto Physics
localization of light - University of Toronto Physics

1 Non-exponential Auger decay A.M. Ishkhanyan and V.P. Krainov
1 Non-exponential Auger decay A.M. Ishkhanyan and V.P. Krainov

Electronic Structure of Superheavy Atoms. Revisited.
Electronic Structure of Superheavy Atoms. Revisited.

Quantum Tunneling
Quantum Tunneling

ppt - Pavel Stránský
ppt - Pavel Stránský

... Complex behavior encoded in simple equations (order-chaos-order transition) Possibility of studying manifestations of both classical and quantum chaos and their relation Good classical-quantum correspondence found even in the mixed dynamics regime ...
Collective potential for large-N Hamiltonian matrix models and free Fisher information
Collective potential for large-N Hamiltonian matrix models and free Fisher information

... analogous to the above change of variables from Cartesian to radial coordinates. There is a Jacobian associated with this nonlinear change. Transforming to “radial wave functions” to absorb this will again induce an extra term in the potential, involving the derivative of the Jacobian. These univers ...
PHONON I: The dispersion relation (by CHY) Introduction The static
PHONON I: The dispersion relation (by CHY) Introduction The static

Physics 243 Lecture Notes
Physics 243 Lecture Notes

Femtosecond X-ray measurement of coherent lattice vibrations near
Femtosecond X-ray measurement of coherent lattice vibrations near

... cell. The crystal basis consists of two Bi atoms: atom 1 on a lattice site, and atom 2 at a position slightly displaced from the centre along the body diagonal of the unit cell. The distortion from the cubic structure to A7 is stabilized by the so-called Peierls–Jones13 mechanism, which introduces a ...
THE CASIMIR EFFECT
THE CASIMIR EFFECT

Superluminal Quantum Models of the Photon and Electron
Superluminal Quantum Models of the Photon and Electron

Phys. Rev. B.76.193101(2007) - Purdue Physics
Phys. Rev. B.76.193101(2007) - Purdue Physics

Site-resolved imaging of a fermionic Mott insulator
Site-resolved imaging of a fermionic Mott insulator

Chapter 6
Chapter 6

Chapter 6
Chapter 6

... free particle in free space Free elementary particles can move with arbitrary velocities and posses arbitrary energy levels not bounded to multiples of Planck's constant. The Shrödinger's wave theory later on replaced Bohr's very simple and visual atomic model, describing matter in terms of probabil ...
What is Solid State Physics? - Department of Physics and Astronomy
What is Solid State Physics? - Department of Physics and Astronomy

IOSR Journal of Electronics and Communication Engineering (IOSR-JECE)
IOSR Journal of Electronics and Communication Engineering (IOSR-JECE)

... predicted that a significant band gap could be induced by lowering the symmetry of the system through the application of a perpendicular electric field [6] [7]. One of the most remarkable properties of BLG is the ability to open a gap in the spectrum by electric field effect biased BLG.In the absence ...
114, 125301 (2015)
114, 125301 (2015)

... exact. In the unstable region, the BEC is destroyed after a modulation time of just 10 ms to 50 ms, at which point the momentum space distribution is dominated by high momentum excitations, which would be interpreted as thermal excitations observed in the experiment. In general, the exact size of th ...
The Theory of Collisions between Two Diatomic Molecules
The Theory of Collisions between Two Diatomic Molecules

Quantum 2 Info - Ms. Gamm
Quantum 2 Info - Ms. Gamm

Intensities of analogous Rydberg series in CF3Cl, CF3Br and in
Intensities of analogous Rydberg series in CF3Cl, CF3Br and in

Prediction of new inorganic molecules with quantum chemical
Prediction of new inorganic molecules with quantum chemical

Reading materials
Reading materials

Metallic quantum dots - Chalmers University of Technology
Metallic quantum dots - Chalmers University of Technology

... experiment was performed at ultrahigh vacuum and extremely low temperature. The surface electrons become confined laterally to the adatom structure because of the strong scattering that occurs at the Fe atoms [1], and perpendicular to the surface due to the bandgap that exists for the (111) face of ...
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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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