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Compass models: Theory and physical motivations
Compass models: Theory and physical motivations

numerical simulations of strongly correlated electron and spin systems
numerical simulations of strongly correlated electron and spin systems

... techniques have often contributed to our understanding of these systems. Exact Diagonalization (ED) requires the storage of at least two vectors the size of the Hilbert space under consideration (which grows exponentially with system size) which makes it affordable only for small systems. The Densit ...


An attractive critical point from weak antilocalization on fractals
An attractive critical point from weak antilocalization on fractals

Average velocity of solitary coarse grain in flows over smooth and
Average velocity of solitary coarse grain in flows over smooth and

Strongly correlated quantum physics with cold atoms - Max
Strongly correlated quantum physics with cold atoms - Max

... This bosonic state can be created by a dynamical process that involves crossing a quantum phase transition and which is supported by the symmetries of the physical system. We characterize the final state by means of a measurable two-particle correlator that detects both the presence of the pairs and ...
Superconductivity and Charge Order of Confined Fermi Systems
Superconductivity and Charge Order of Confined Fermi Systems

Ph.D. thesis - Chin Lab at the University of Chicago
Ph.D. thesis - Chin Lab at the University of Chicago

Nonequilibrium Green`s function approach
Nonequilibrium Green`s function approach

Trento 2001 - Università degli Studi dell`Insubria
Trento 2001 - Università degli Studi dell`Insubria

... VMC is a “classical” simulation method Nature is not classical, dammit, and if you want to make a simulation of nature, you'd better make it quantum mechanical, and by golly it's a wonderful problem, because it doesn't look so easy. Richard P. Feynman ...
Interacting Anyons in a One-Dimensional Optical Lattice
Interacting Anyons in a One-Dimensional Optical Lattice

Density in the calculus sequence
Density in the calculus sequence

Electron transport, interaction and spin in graphene and graphene nanoribbons Artsem Shylau
Electron transport, interaction and spin in graphene and graphene nanoribbons Artsem Shylau

On the Theory of Generalized Algebraic Transformations
On the Theory of Generalized Algebraic Transformations

Elastic rod model of a supercoiled DNA molecule
Elastic rod model of a supercoiled DNA molecule

... Developing a theory beyond the elastic regime is a much more difficult task, since such a theory should involve both the self-repulsion of the chain (necessary to prevent a collapse of plectonemes), and the possibility of denaturation. Some first attempts in these directions can be found in [13,14]. Re ...
pdf
pdf

A quantum gas with tunable interactions in an optical lattice
A quantum gas with tunable interactions in an optical lattice

The Mathematics of the Casimir Effect
The Mathematics of the Casimir Effect

On Fractional Schrödinger Equation and Its Application
On Fractional Schrödinger Equation and Its Application

... Complex systems (CS) are frequent in nature. Mathematical methods can be helpful in understanding them. Motivated by the properties of CS we concluded that Fractional order systems are more suitable for describing CS for the following reasons: First they are more natural in describing fractal system ...
Lectures on Quantum Mechanics (nonlinear PDE point of view)
Lectures on Quantum Mechanics (nonlinear PDE point of view)

Electronic Transport in Metallic Systems and Generalized Kinetic
Electronic Transport in Metallic Systems and Generalized Kinetic

Sampling Techniques for Computational Statistical Physics
Sampling Techniques for Computational Statistical Physics

Electron-electron scattering in linear transport in two
Electron-electron scattering in linear transport in two

... the scale over which t («) varies, there can be significant differences in the calculated mobility using the two different methods. For example, we show below that in particular cases in GaAs quantum wells, m 0 / m ` '2. Thus, for accurate theoretical determination of the mobility at the semiclassic ...
Nonequilibrium dynamical mean-field theory - Physik Uni
Nonequilibrium dynamical mean-field theory - Physik Uni

n - at www.arxiv.org.
n - at www.arxiv.org.

< 1 2 3 4 5 6 ... 48 >

Lattice Boltzmann methods

Lattice Boltzmann methods (LBM) (or Thermal Lattice Boltzmann methods (TLBM)) is a class of computational fluid dynamics (CFD) methods for fluid simulation. Instead of solving the Navier–Stokes equations, the discrete Boltzmann equation is solved to simulate the flow of a Newtonian fluid with collision models such as Bhatnagar-Gross-Krook (BGK). By simulating streaming and collision processes across a limited number of particles, the intrinsic particle interactions evince a microcosm of viscous flow behavior applicable across the greater mass.
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