Finite Temperature Models of Bose-Einstein Condensation
Nick P. Proukakis, Brian Jackson

TL;DR
This paper provides an accessible tutorial overview of various finite-temperature theoretical models for Bose-Einstein condensates, highlighting their common features, differences, and practical applications for researchers and newcomers.
Contribution
It systematically compares and clarifies different theoretical approaches to finite-temperature Bose-Einstein condensates, serving as a comprehensive reference and educational resource.
Findings
Clarifies relationships between models
Highlights strengths and limitations of approaches
Provides a structured guide for researchers
Abstract
The theoretical description of trapped weakly-interacting Bose-Einstein condensates is characterized by a large number of seemingly very different approaches which have been developed over the course of time by researchers with very distinct backgrounds. Newcomers to this field, experimentalists and young researchers all face a considerable challenge in navigating through the `maze' of abundant theoretical models, and simple correspondences between existing approaches are not always very transparent. This Tutorial provides a generic introduction to such theories, in an attempt to single out common features and deficiencies of certain `classes of approaches' identified by their physical content, rather than their particular mathematical implementation. This Tutorial is structured in a manner accessible to a non-specialist with a good working knowledge of quantum mechanics. Although…
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