arXiv · 2112.10582
Measurement of the {\alpha}-particle monopole transition form factor challenges theory: a low-energy puzzle for nuclear forces?
Abstract
We perform a systematic study of the $\alpha$-particle excitation from its ground state $0_1^+$ to the $0_2^+$ resonance. The so-called monopole transition form factor is investigated via an electron scattering experiment in a broad $Q^2$-range (from $0.5$ to $5.0$ fm$^{-2}$). The precision of the new data dramatically superseeds that of older sets of data, each covering only a portion of the $Q^2$-range. The new data allow the determination of two coefficients in a low-momentum expansion leading to a new puzzle. By confronting experiment to state-of-the-art theoretical calculations we observe that modern nuclear forces, including those derived within chiral effective field theory which are well tested on a variety of observables, fail to reproduce the excitation of the $\alpha$-particle.
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S. Kegel, P. Achenbach, S. Bacca, N. Barnea, J. Bericic, D. Bosnar, L. Correa, M. O. Distler, A. Esser, H. Fonvieille, I. Friscic, M. Heilig, P. Herrmann, M. Hoek, P. Klag, T. Kolar, W. Leidemann, H. Merkel, M. Mihovilovic, J. Mueller, U. Mueller, G. Orlandini, J. Pochodzalla, B. S. Schlimme, M. Schoth, F. Schulz C. Sfienti, S. Sirca, R. Spreckels, Y. Stoettinger, M. Thiel, A. Tyukin, T. Walcher, A. Weber. 2021-12-20. Measurement of the {\alpha}-particle monopole transition form factor challenges theory: a low-energy puzzle for nuclear forces?. https://arxiv.org/abs/2112.10582
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