Bounds on diatomic molecules in a relativistic model
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Publication:5246595
DOI10.1063/1.3321495zbMath1309.81350arXiv1003.2891OpenAlexW2017501232MaRDI QIDQ5246595
Publication date: 21 April 2015
Published in: Journal of Mathematical Physics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/1003.2891
Semiclassical techniques, including WKB and Maslov methods applied to problems in quantum theory (81Q20) Relativistic dynamics for problems in Hamiltonian and Lagrangian mechanics (70H40) Molecular physics (81V55)
Cites Work
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- Asymptotic neutrality of diatomic molecules
- Long range atomic potentials in Thomas-Fermi theory
- Relativistic stability of matter. I
- Spectral analysis of pseudodifferential operators
- Spectral theory of the operator \((p^2+m^2)^{1/2}-Ze^2/r\)
- The stability and instability of relativistic matter
- Asymptotics of the ground state energies of large Coulomb systems
- The ground state energy of a classical gas
- An uncertainty principle for fermions with generalized kinetic energy
- One-electron relativistic molecules with Coulomb interaction
- The large-Z Behavior of pseudorelativistic atoms
- Relativistic Scott correction for atoms and molecules
- Thomas-fermi and related theories of atoms and molecules
- Dissociation of homonuclear relativistic molecular ions.
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