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The Hyperspherical Harmonics method: a tool for testing and improving nuclear interaction models

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arxiv 1912.09751 v1 pith:5EOQMCMA submitted 2019-12-20 nucl-th

classification nucl-th
keywords methodnuclearscatteringboundharmonicshypersphericalinteractionparticular
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abstract

The Hyperspherical Harmonics (HH) method is one of the most accurate techniques to solve the quantum mechanical problem for nuclear systems with $A\le 4$. In particular, by applying the Rayleigh-Ritz or Kohn variational principle, both bound and scattering states can be addressed, using either local or non-local interactions. Thanks to this versatility, the method can be used to test the two- and three-nucleon components of the nuclear interaction. In the present review we introduce the formalism of the HH method, both for bound and scattering states. In particular, we describe the implementation of the method to study the $A=3$ and $4$ scattering problem. Second, we present a selected choice of results of the last decade, most representative of the latest achievements. Finally, we conclude with a discussion of what we believe will be the most significant developments within the HH method for the next five-to-ten years.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Three-baryon femtoscopy as an effective 3$\rightarrow$3 scattering experiment

    nucl-ex 2026-08 conditional novelty 7.0 of 10

    A precision measurement of the three-proton correlation function in pp collisions at 13.6 TeV provides the first direct probe of unbound three-baryon continuum dynamics and shows sensitivity to the partial-wave struct...

  2. Wigner Phase-Space Densities of Nuclear Clusters and Hypernuclei

    nucl-th 2025-08 reject novelty 4.0 of 10

    The authors calculate Wigner phase-space densities for clusters from deuteron to double-Lambda hyperhelium using hyperspherical-harmonic solutions of the Schrödinger equation.

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