Three-body Forces in Oscillator Bases Expansion
- URL: http://arxiv.org/abs/2405.18184v1
- Date: Tue, 28 May 2024 13:50:20 GMT
- Title: Three-body Forces in Oscillator Bases Expansion
- Authors: Cyrille Chevalier, Selma Youcef Khodja,
- Abstract summary: The method is generalised to include the management of a given class of three-body forces.
The accuracy of the generalisation is assessed by comparing with results from Lagrange mesh method.
Extensions for systems of $N$ identical bodies and for systems of two identical particles and one distinct are also discussed.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: The oscillator bases expansion stands as an efficient approximation method for the time-independent Schr\"odinger equation. The method, originally formulated with one non-linear variational parameter, can be extended to incorporate two such parameters. It handles both non- and semi-relativistic kinematics with generic two-body interactions. In the current work, focusing on systems of three identical bodies, the method is generalised to include the management of a given class of three-body forces. The computational cost of this generalisation proves to not exceed the one for two-body interactions. The accuracy of the generalisation is assessed by comparing with results from Lagrange mesh method and hyperspherical harmonic expansions. Extensions for systems of $N$ identical bodies and for systems of two identical particles and one distinct are also discussed.
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