Journal of Physics B Atomic Molecular and Optical Physics · 2000 · 13 citations · 16 references
Quantum ScienceEngineeringPhysicsNatural SciencesCompression (Physics)Applied PhysicsAtomic CompressibilityQuantum Mechanical PropertyAtomic PhysicsNew Scaling RulesQuantum TheoryUltracold AtomQuantum ChemistryAtomic Pressure
We consider the concept of atomic pressure for atoms subjected to quantum confinement. New scaling rules are introduced which allow the compressibility to be expressed as the product of two factors. The first is a term independent of compression, which varies widely from atom to atom, but can be computed in the free atom limit. The second is a term expressed in dimensionless variables, whose dependence on compression is in general nonlinear and may exhibit discontinuities. However, it is shown not to vary much from one atom to another and to follow general rules which are easily understood. We have performed fully relativistic ab initio calculations to illustrate these general rules of atomic compressibility, and we characterize the variation of atomic compressibility for both soft and hard atoms.
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GRASP: A general-purpose relativistic atomic structure program
K G Dyall, I. P. Grant, C. T. Johnson et al. · Computer Physics Communications · 1989 · 1.5K citations
Confined many-electron systems
W. Jaskólski · Physics Reports · 1996 · 386 citations
Endohedral fullerene production
R. Tellgmann, N. Krawez, Sen Lin et al. · Nature · 1996 · 201 citations
Engineering, Endohedral Fullerene Production, Hydrogen Transition +7