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Ab initio description of monopole resonances in light- and medium-mass nuclei: III. Moments evaluation in ab initio PGCM calculations

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arxiv 2404.14154 v1 pith:4INMMAS2 submitted 2024-04-22 nucl-th

classification nucl-th
keywords monopoleenergycentroidinitiomomentscalculationsdescriptiondispersion
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The paper is the third of a series dedicated to the ab initio description of monopole giant resonances in mid-mass closed- and open-shell nuclei via the so-called projected generator coordinate method. The present focus is on the computation of the moments $m_k$ of the monopole strength distribution, which are used to quantify its centroid energy and dispersion. First, the capacity to compute low-order moments via two different methods is developed and benchmarked for the $m_1$ moment. Second, the impact of the angular momentum projection on the centroid energy and dispersion of the monopole strength is analysed before comparing the results to those obtained from consistent quasi-particle random phase approximation calculations. Next, the so-called energy weighted sum rule (EWSR) is investigated. First, the appropriate ESWR in the center-of-mass frame is derived analytically. Second, the exhaustion of the intrinsic EWSR is tested in order to quantify the (unwanted) local-gauge symmetry breaking of the presently employed chiral effective field theory ($\chi$EFT) interactions. Finally, the infinite nuclear matter incompressibility associated with the employed $\chi$EFT interactions is extracted by extrapolating the finite-nucleus incompressibility computed from the monopole centroid energy.

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  1. Nuclear giant resonances from first principles

    nucl-th 2026-04 unverdicted novelty 2.0 of 10

    A review of random phase approximation, Lorentz integral transform coupled-cluster, projected generator-coordinate, and self-consistent Green's functions methods for nuclear giant resonances, with benchmark comparison...

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