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Five-body calculation of $s$-wave $n$-$^4$He scattering at next-to-leading order pionless effective field theory

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arxiv 2306.04036 v1 pith:42DSYOJJ submitted 2023-06-06 nucl-th

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

We present the first five-body calculations of $s$-wave $n$-$^4$He scattering within leading order and next-to-leading order (NLO) pionless effective field theory. Using an harmonic oscillator trap technique and pionless effective field theory fitted to just six well-established experimental parameters, we predict the $s$-wave $n$-$^4$He phase shifts, scattering length $a^{1/2}_{n ^4\text{He}}(\text{NLO})=2.47(4\ \text{num.})~(17\ \text{theor.})~{\rm fm}$, and effective range $r^{1/2}_{n ^4\text{He}}(\text{NLO})=1.384(3\ \text{num.})~(211\ \text{theor.})~{\rm fm}$ in agreement with experiment. The apparent cutoff independence of our results is used to estimate the theoretical errors coming as an integral part of our final results.

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  1. Data-driven trap theory for nuclear scattering

    nucl-th 2025-09 conditional novelty 6.0 of 10

    A data-calibrated quantization condition is proposed to extract nuclear scattering phase shifts from harmonic-trap spectra for neutral and charged particles.

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