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Dr. Humam Ghassib
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Details
Low and ultralow temperature physics
Using a variety of theoretical techniques (see below)
Many-body theory
Including generalized perturbative theories [Galitskii-Migdal-Feynman (GMF), Brueckner-Bethe-Goldstone (BBG), ...], Feynman diagrammatic techniques, static fluctuation approximation (SFA), Monte Carlo techniques
Liquid 3He and liquid 4He; 3He-4He mixtures; other quantum fluids (electronic fluid, nuclear matter, ...)
With emphasis on microscopic theory
Thin films and low-dimensional systems
For example, 3He-4HeII sandwich, 3He on 4He monolayer, 1D solid He, ...
Superfluidity; supersolidity
In both Fermi and Bose systems and under various conditions
Nanophysics
Nonextensive statistical physics, quantum dots, ...
Trapped Bose and Fermi Gases
Using SFA and state-of-the-art Monte Carlo techniques
'Classical' atomic gases (Li, Na, Ne, Ar, ...)
Thermophysical and scattering properties with emphasis on the border region between classical and quantum regimes
Physics education
At various educational stages (school and university)
History and philosophy of science
In particular, Arab-Islamic heritage
Arabic language and culture
Arabic scientific writing (symantics and syntax); Arab thought
Scattering theory
As applied to atomic gases
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