BCS thermal vacuum of fermionic superfluids and its perturbation theory

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BCS thermal vacuum of fermionic superfluids and its perturbation theory
BCS thermal vacuum of fermionic superfluids and its perturbation theory
BCS thermal vacuum of fermionic superfluids and its perturbation theory
PDF) Thermal vacuum and its perturbation theory of BCS superfluids
BCS thermal vacuum of fermionic superfluids and its perturbation theory
color online) Energy per particle E/N , in the BCS-BEC crossover (with
BCS thermal vacuum of fermionic superfluids and its perturbation theory
Color online) The thermal relaxation rate in a trap in units of ǫF/¯ h
BCS thermal vacuum of fermionic superfluids and its perturbation theory
BCS thermal vacuum of fermionic superfluids and its perturbation theory
BCS thermal vacuum of fermionic superfluids and its perturbation theory
Theories of Linear Response in BCS Superfluids and How They Meet Fundamental Constraints
BCS thermal vacuum of fermionic superfluids and its perturbation theory
PDF) Applying BCS-BEC crossover theory to high-temperature superconductors and ultracold atomic Fermi gases (Review Article)
BCS thermal vacuum of fermionic superfluids and its perturbation theory
Second sound in the crossover from the Bose-Einstein condensate to the Bardeen-Cooper-Schrieffer superfluid
BCS thermal vacuum of fermionic superfluids and its perturbation theory
PPT - Relativistic BCS-BEC Crossover at High Density PowerPoint Presentation - ID:3220009
BCS thermal vacuum of fermionic superfluids and its perturbation theory
Topological Superfluids Journal of Experimental and Theoretical Physics
BCS thermal vacuum of fermionic superfluids and its perturbation theory
Superconductivity close to the Mott state: From condensed-matter systems to superfluidity in optical lattices – arXiv Vanity
BCS thermal vacuum of fermionic superfluids and its perturbation theory
Condensed Matter, Free Full-Text
BCS thermal vacuum of fermionic superfluids and its perturbation theory
Condensed Matter, Free Full-Text
BCS thermal vacuum of fermionic superfluids and its perturbation theory
The difference of free energy density for the superfluid phase from
BCS thermal vacuum of fermionic superfluids and its perturbation theory
The vacuum dispersion relation E(k) extrapolated to T → 0 and then j → 0.
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