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The nucleonic thermal conductivity of “pastas” in neutron star matter
(Elsevier Science, 2020-10)
This investigation explores the nucleonic thermal conductivity of nuclear star matter as it undergoes the “topological” transition to the “pasta” regime, and further down to the solid-liquid phase transition. The study was ...
Cold fermions with pairing interactions: New results based on fluiddynamical descriptions
(Springer/Plenum Publishers, 2012-02)
We present a rigorous derivation of the moment hierarchy of the density and pair density matrices of a two species fermion superfluid in coordinate representation. We discuss the tools to truncate at any desired level and ...
Structure of vortices in two-component Bose-Einstein condensates
(American Physical Society, 2001-07)
We develop a three-dimensional analysis of the phase separation of two-species Bose-Einstein condensates in the presence of vorticity within the Thomas-Fermi approximation. We find different segregation features according ...
Droplet formation in cold asymmetric nuclear matter in the quark-meson-coupling model
(2000-07-03)
The quark-meson-coupling model is used to study droplet formation from the liquid-gas phase transition in cold asymmetric nuclear matter. The critical density and proton fraction for the phase transition are determined in ...
Droplet formation in cold asymmetric nuclear matter in the quark-meson-coupling model
(2000-07-03)
The quark-meson-coupling model is used to study droplet formation from the liquid-gas phase transition in cold asymmetric nuclear matter. The critical density and proton fraction for the phase transition are determined in ...
An implementation of the average atom model using the thermodynamic consistency condition: Application to AR
(Polish Academy of Sciences. Institute of Physics, 2018-12)
We present a computational implementation of the average atom model for the calculation of matter properties under different conditions of density and temperature. Different issues related to the practical implementation, ...
Two-mode effective interaction in a double-well condensate
(American Physical Society, 2013-05)
We investigate the origin of a disagreement between the two-mode model and the exact GrossPitaevskii dynamics applied to double-well systems. In general this model, even in its improved version, predicts a faster dynamics ...
Hole-level structure of double -doped quantum wells in Si: The influence of the split-off band
(Elsevier, 2007-02-15)
We present the electronic structure calculation of two closely p-type -doped quantum wells within the lines of the Thomas–Fermi–Dirac (TFD) theory. The distance between the impurity planes as well as the impurity density ...
High-Pressure effects in to the Absorption coefficient and relative refractive index change in an asymmetric double δ-doped GaAs quantum well
(Wiley, 2015-03-26)
In the framework of the effective mass approximation and using a Thomas–Fermi‐like model for the conduction band potential energy profile, the effects of hydrostatic pressure on the linear and nonlinear intersubband optical ...
Nonlinear optical properties in an asymmetric double δ‐doped quantum well with a Schottky barrier: Electric field effects
(Wiley, 2013-09)
The effect of an externally applied static electric field on the nonlinear optical response in a GaAs asymmetric double urn:x-wiley:15213951:media:pssb201350050:pssb201350050-math-0003‐doped quantum well is studied. The ...