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Ground states of large quantum dots in magnetic fields
Elliott H. Lieb
, Jan Philip Solovej
, Jakob Yngvason
Mathematics
Research output
:
Contribution to journal
›
Article
›
peer-review
73
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Scopus citations
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Keyphrases
Two Dimensional
100%
Quantum Dots
100%
Magnetic Field
100%
Quantum Mechanical
66%
Electron Density
33%
High-density Limit
33%
Coupling Constant
33%
Energy Density
33%
Electrostatic Interaction
33%
Thomas-Fermi Theory
33%
Ground State Energy
33%
Mechanical Energy
33%
Confining Potential
33%
Weak Coupling Limit
33%
Exchange Energy
33%
Sum of Eigenvalues
33%
Lieb-Thirring Inequalities
33%
Point Charge
33%
Nfix
33%
Homogeneous Magnetic Field
33%
Continuum Electrostatics
33%
Homogeneous Potentials
33%
Electrostatic Theory
33%
Thomas-Fermi Model
33%
Limit Theory
33%
Electron System
33%
Physics
Quantum Dot
100%
Magnetic Field
100%
Ground State
100%
Electrostatics
66%
Thomas-Fermi Model
66%
Coupling Constant
33%
N Electron
33%
Exchange Correlation Energy
33%
Mathematics
Magnetic Field
100%
Ground State
100%
Functionals
66%
State Energy
33%
Eigenvalue
33%
Correlation Energy
33%
Coupling Limit
33%
Point Charge
33%
π electron system
33%