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arXiv:1904.07182·v2·Nuclear Theory

Momentum-space probability density of He in Halo Effective Field Theory

M. Göbel · H.-W. Hammer · C. Ji · D. R. Phillips

Abstract

We compute the momentum-space probability density of He at leading order in Halo EFT. In this framework, the He nucleus is treated as a three-body problem with a He core () and two valence neutrons (). This requires the and t-matrices as well as a force as input in the Faddeev equations. Since the t-matrix corresponds to an energy-dependent potential, we consider the consequent modifications to the standard normalization and orthogonality conditions. We find that these are small for momenta within the domain of validity of Halo EFT. In this regime, the He probability density is regulator independent, provided the cutoff is significantly above the EFT breakdown scale.

Comments: 34 pages, 3 figures, version to appear in Few-Body Systems. Further explanations and discussions added, typos corrected, results unchanged

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