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Structure of binary Bose-Einstein condensates
Marek Trippenbach
, Krzysztof Góral
, Kazimierz Rza̧zewski
, Boris Malomed
,
Y. B. Band
Department of Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
230
Scopus citations
Overview
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Keyphrases
Binary Bose-Einstein Condensate
100%
Thomas-Fermi Approximation
100%
Coupled Gross-Pitaevskii Equations
66%
Numerical Simulation
33%
Numerical Solution
33%
Kinetic Energy
33%
Average Energy
33%
Algebraic Equation
33%
Symmetry Breaking
33%
Chemical Potential
33%
Non-overlapping
33%
Wave Function
33%
Potential Energy
33%
Confining Potential
33%
First-in-class
33%
Two-component Bose-Einstein Condensates
33%
Normalization Condition
33%
Finite-range Interactions
33%
Bose-Einstein Condensate
33%
Scattering Length
33%
Mathematics
Einstein Condensate
100%
Ground State
100%
Gross-Pitaevskii Equation
50%
Algebraic Equation
25%
Symmetry Breaking
25%
Range Interaction
25%
Numerical Solution
25%
Scattering Length
25%
chemical potential μ
25%
Wavefunctions
25%
Earth and Planetary Sciences
Ground State
100%
Bose-Einstein Condensation
100%
Broken Symmetry
25%
Kinetic Energy
25%
Confining
25%
Chemistry
Ground State
100%
Bose-Einstein Condensation
100%
Kinetic Energy
25%
Chemical Potential
25%
Engineering
Ground State
100%
Numerical Solution
25%
Chemical Potential
25%
Algebraic Equation
25%