Search results for "Fermi gas"

showing 10 items of 86 documents

Local correlation functional for electrons in two dimensions

2008

We derive a local approximation for the correlation energy in two-dimensional electronic systems. In the derivation we follow the scheme originally developed by Colle and Salvetti for three dimensions, and consider a Gaussian approximation for the pair density. Then, we introduce an ad-hoc modification which better accounts for both the long-range correlation, and the kinetic-energy contribution to the correlation energy. The resulting functional is local, and depends parametrically on the number of electrons in the system. We apply this functional to the homogeneous electron gas and to a set of two-dimensional quantum dots covering a wide range of electron densities and thus various amount…

PhysicsElectronic correlationStrongly Correlated Electrons (cond-mat.str-el)FOS: Physical sciences02 engineering and technologyElectron021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesElectronic Optical and Magnetic MaterialsRange (mathematics)Condensed Matter - Strongly Correlated ElectronsCorrelation functionQuantum mechanics0103 physical sciencesCorrelation integralDensity functional theoryStatistical physicsLocal-density approximation010306 general physics0210 nano-technologyFermi gas
researchProduct

Colle-Salvetti-type local density functional for the exchange-correlation energy in two dimensions

2010

We derive an approximate local density functional for the exchange-correlation energy to be used in density-functional calculations of two-dimensional systems. In the derivation we employ the Colle-Salvetti wave function within the scheme of Salvetti and Montagnani [Phys. Rev. A 63, 052109 (2001)] to satisfy the sum rule for the exchange-correlation hole. We apply the functional for the two-dimensional homogeneous electron gas as well as to a set of quantum dots and find a very good agreement with exact reference data.

PhysicsElectronic correlationStrongly Correlated Electrons (cond-mat.str-el)Reference data (financial markets)FOS: Physical sciencesType (model theory)Atomic and Molecular Physics and OpticsCondensed Matter - Strongly Correlated ElectronsQuantum dotQuantum mechanicsDensity functional theorySum rule in quantum mechanicsPhysics::Chemical PhysicsWave functionFermi gas
researchProduct

Accurate Evaluation of Fermi-Dirac Integrals and Their Derivatives for Arbitrary Degeneracy and Relativity

1996

The equation of state of an ideal Fermi gas is expressed in terms of Fermi-Dirac integrals. We give formulae for evaluation the Fermi-Dirac integrals of orders 1/2, 3/2, and 5/2 and their derivatives in various limits of non- and extreme degeneracy and relativity. We provide tables and a Fortran subroutine for numerical evaluation of the integrals and derivatives when a limit does not apply. The functions can be evaluated to better than 1% accuracy for any temperature and density using these methods.

PhysicsEquation of stateIdeal (set theory)Mathematical modelAstrophysics (astro-ph)FOS: Physical sciencesAstronomy and AstrophysicsAstrophysicssymbols.namesakeTheory of relativitySpace and Planetary SciencesymbolsFermi–Dirac statisticsLimit (mathematics)Fermi gasDegeneracy (mathematics)Mathematical physicsThe Astrophysical Journal Supplement Series
researchProduct

Formation of Wigner molecules in small quantum dots

2000

It was recently argued that in small quantum dots the electrons could crystallize at much higher densities than in the infinite two-dimensional electron gas. We compare predictions that the onset of spin polarization and the formation of Wigner molecules occurs at a density parameter $r_s\approx 4 a_B^*$ to the results of a straight-forward diagonalization of the Hamiltonian matrix.

PhysicsHamiltonian matrixSpin polarizationCondensed matter physicsQuantum dotQuantum mechanicsMoleculeElectronApproxFermi gasPhysical Review B
researchProduct

Correlation and spin polarization in quantum dots: Local spin density functional theory revisited

2005

Using quantum dot artificial atoms as a simple toy model, we reflect on the question of whether spin density functional theory (SDFT) can accurately describe correlation effects in low-dimensional fermion systems. Different expressions for the local density approximation of the exchange-correlation energy for the two-dimensional electron gas, such as the much-used functional of Tanatar and Ceperley, and the recent suggestion by Attaccalite et al., are compared with the results of a numerical diagonalization of the many-body Hamiltonian matrix in the limit of small electron numbers. For systems with degeneracies, as shown in the present work for the example of a spin triplet with S = 1, the …

PhysicsHamiltonian matrixToy modelSpin polarizationCondensed matter physicsConfiguration interactionCondensed Matter PhysicsAtomic and Molecular Physics and OpticsQuantum mechanicsPhysical and Theoretical ChemistryLocal-density approximationFermi gasMultipletSpin-½International Journal of Quantum Chemistry
researchProduct

Nonlinear stopping power of an electron gas for slow ions

1986

Theoretical calculations of the stopping power of the electron gas for slow ions, v${v}_{F}$, are reviewed. New results are presented for stopping power and effective charge based on nonlinear density-functional calculations. Extensive comparisons with available experimental data show that these new theoretical results are clearly superior to earlier calculations based on linear theory.

PhysicsNonlinear systemLinear systemStopping power (particle radiation)Atomic physicsFermi gasEffective nuclear chargeCharged particleIonPhysical Review A
researchProduct

Quasi-particle and plasmaron properties in the electron gas

1972

The self-energy function of the degenerate electron gas is studied in an approximation which uses the dielectric function proposed by Singwi, Tosi, Land and Sjolander, and neglects the corresponding vertex corrections. Two contributions to the self-energy are distinguished which arise from the plasmon pole and the particle-hole continuum respectively. Comparison of the results is made with the analogous approximation to the self-energy which uses the RPA dielectric function, and with a further, simplified approximation. Subsequently the properties of the usual quasi-particle and of the plasmaron are calculated. Nummerically, the most significant effect found is a 25% reduction of the plasma…

PhysicsNuclear and High Energy PhysicsCondensed matter physicsQuantum electrodynamicsDegenerate energy levelsContinuum (design consultancy)Vertex (curve)QuasiparticleFunction (mathematics)PlasmaronFermi gasPlasmonZeitschrift für Physik A Hadrons and nuclei
researchProduct

Incoherent bremsstrahlung in nuclei

1994

We have studied the processes A(e, e′γ)X in nuclei, or incoherent bremsstrahlung, and determined expressions for the cross section in terms of the same nuclear response functions RL, RT, which appear in inclusive electron scattering (e, e′) in nuclei. Calculations of the cross sections are carried out using a Fermi gas model, complemented by the local-density approximation, to evaluate the response functions. We have carried out a study which shows that the reaction can be used to determine reliably the response functions from experimental data. On the other hand we have compared the incoherent bremsstrahlung with the coherent one in order to see the limits to the tagging technique, which p…

PhysicsNuclear and High Energy PhysicsCross section (physics)PhotonScatteringIncoherent scatterBremsstrahlungElectronAtomic physicsFermi gasElectron scatteringComputational physicsNuclear Physics A
researchProduct

Neutron Fermi liquids under the presence of a strong magnetic field with effective nuclear forces

2009

Landau's Fermi liquid parameters are calculated for non-superfluid pure neutron matter in the presence of a strong magnetic field at zero temperature. The particle-hole interactions in the system, where a net magnetization may be present, are characterized by these parameters in the framework of a multipolar formalism. We use either zero- or finite-range effective nuclear forces to describe the nuclear interaction. Using the obtained Fermi liquid parameters, the contribution of a strong magnetic field on some bulk magnitudes such as isothermal compressibility and spin susceptibility is also investigated.

PhysicsNuclear and High Energy PhysicsFermi contact interactionNuclear TheoryCondensed matter physicsFOS: Physical sciencesFísicaQuantum oscillationsNuclear matterNuclear Theory (nucl-th)MagnetizationNuclear forceNeutronFermi liquid theoryFermi gas
researchProduct

Theoretical uncertainties on quasielastic charged-current neutrino–nucleus cross sections

2006

We estimate the theoretical uncertainties of the model developed in Phys. Rev. C70 055503 for inclusive quasielastic charged-current neutrino-nucleus reactions at intermediate energies. Besides we quantify the deviations of the predictions of this many body framework from those obtained within a simple Fermi gas model. An special attention has been paid to the ratio \sigma(\mu)/\sigma(e) of interest for experiments on atmospheric neutrinos. We show that uncertainties affecting this ratio are likely smaller than 5%

PhysicsNuclear and High Energy PhysicsParticle physicsArgonNuclear TheoryMany-body theorychemistry.chemical_elementFísicaFOS: Physical sciencesMany bodyNeutrino scatteringNuclear physicsNuclear Theory (nucl-th)High Energy Physics - Phenomenologymedicine.anatomical_structureHigh Energy Physics - Phenomenology (hep-ph)chemistrymedicineNeutrinoFermi gasNucleusCharged currentPhysics Letters B
researchProduct