The quantum N-body problem and the auxiliary field method
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Publication:5246589
DOI10.1063/1.3340799zbMath1309.81357arXiv0908.2829OpenAlexW3101765700MaRDI QIDQ5246589
Fabien Buisseret, Bernard Silvestre-Brac, Claude Semay, Fabian Brau
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/0908.2829
Nuclear physics (81V35) Selfadjoint operator theory in quantum theory, including spectral analysis (81Q10) Atomic physics (81V45) Many-body theory; quantum Hall effect (81V70)
Related Items (4)
The auxiliary field method in quantum mechanics ⋮ Two- and three-body calculations within the dominantly orbital state method ⋮ A Simple Tool to Study Many-Body Forces ⋮ Duality relations in the auxiliary field method
Cites Work
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- SEMIRELATIVISTIC HAMILTONIANS AND THE AUXILIARY FIELD METHOD
- Auxiliary fields as a tool for computing analytical solutions of the Schrödinger equation
- Semirelativistic stability ofN-boson systems bound by 1/rijpair potentials
- Extensions of the auxiliary field method to solve Schrödinger equations
- The auxiliary field method and approximate analytical solutions of the Schrödinger equation with exponential potentials
- SemirelativisticN-boson systems bound by attractive pair potentials
- Some equivalences between the auxiliary field method and envelope theory
- DISCRETE SPECTRA OF SEMIRELATIVISTIC HAMILTONIANS
- Convexity and potential sums for Salpeter-type Hamiltonians
- Relativistic N-boson systems bound by pair potentials V(rij)=g(rij2)
- Binding energy of semirelativisticN-boson systems
- Gravitating semirelativisticN-boson systems
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