PaperPanorama

Nuclear Theory·nucl-th

Friday·July 12, 2024

8 papers6 primary·2 cross-listed

  1. 01

    Radiative corrections to proton-proton fusion in pionless EFT

    Evan Combes🇺🇸 · Emanuele Mereghetti🇺🇸 · Lucas Platter🇺🇸

    We study the leading radiative correction to proton-proton fusion using the pionless effective field theory framework at leading order. We derive the relevant matrix elements and evaluate them using the method of regions. We benchmark the accuracy of our approximations by carrying out numerical computations of the full expressions. We show that the first order radiative corrections due to the exchange of a Coulomb photon between positron and proton-proton systems map onto the Sirlin function and the contribution from the Fermi function. We furthermore find that the nuclear structure dependent radiative correction omitted in the previous analysis by Kurylov {\it et al} gives an up to 0.2~\% correction to the pp fusion S-factor with its size ultimately depending on a two-nucleon counterterm that renormalizes the axial two-body current .

    nucl-thhep-phPRC(2024)·5 citations
  2. 02

    Chiral dynamics in soft triaxial nuclei

    Bo Li · Pengwei Zhao · Jie Meng

    The chirality in soft triaxial nuclei is investigated for the first time with the time-dependent and tilted axis cranking covariant density functional theories on a three-dimensional space lattice in a microscopic and self-consistent way. Taking the puzzling chiral nucleus Ag as an example, the experimental energies of the observed nearly degenerate bands are well reproduced without any free parameters beyond the well-defined density functional. A novel chiral mode in soft triaxial nuclei is newly revealed from the microscopic dynamics of the total angular momentum. This opens a new research area for the study of chirality, particularly in relation to soft nuclear shapes.

    nucl-thPLB(2024)·8 citations
  3. 03

    Contact operators in renormalization of attractive singular potentials

    Rui Peng🇨🇳 · Bingwei Long🇨🇳 · Fu-Rong Xu🇨🇳

    We discuss renormalization of chiral nuclear forces in the 3P0 channel of N N scattering at next- to-next-to leading order (N2LO) if the one-pion exchange is treated nonperturbatively at leading order. The matrix elements of the subleading contact potentials become nearly dependent of each other for the so-called exceptional ultraviolet momentum cutoff, making it difficult to determine the strengths of those contact potentials from the empirical phase shifts, as reported in Ref. [1]. We argue that this issue can be resolved by adjusting the strategy by which the low-energy constants are deduced from the data, thus making those exceptional cutoffs amenable to chiral effective field theory.

    nucl-thPRC(2024)·16 citations
  4. 04

    Neutron star calculations with the phenomenological three-nucleon force

    H. Moeini · G.H. Bordbar

    In this work, we have studied the effect of three-nucleon interaction on the neutron stars structure. In our calculations, we have considered the neutron star matter as a beta-stable nuclear matter. We have put the results concerning the TBF effect in perspective against two-body results and other calculations of three-nucleon interactions, using the Urbana v14 potential and the parabolic approximation of the nuclear-matter energy for approximating the problem of asymmetric nuclear matter. As such, solving the Tolman-Oppenheimer-Volkoff equation, we have estimated bulk properties of neutron stars and investigated how the present calculations would agree with the expected dynamical-stability condition.

    nucl-thastro-ph.HEastro-ph.SREur.Phys.J.Plus(2024)·3 citations
  5. 05

    Calibrating global behaviour of equation of state by combining nuclear and astrophysics inputs in a machine learning approach

    Sk Md Adil Imam · Prafulla Saxena · Tuhin Malik · N. K. Patra · B. K. Agrawal

    We implemented symbolic regression techniques to identify suitable analytical functions that map various properties of neutron stars (NSs), obtained by solving the Tolman-Oppenheimer-Volkoff (TOV) equations, to a few key parameters of the equation of state (EoS). These symbolic regression models (SRMs) are then employed to perform Bayesian inference with a comprehensive dataset from nuclear physics experiments and astrophysical observations. The posterior distributions of EoS parameters obtained from Bayesian inference using SRMs closely match those obtained directly from the solutions of TOV equations. Our SRM-based approach is approximately 100 times faster, enabling efficient Bayesian analyses across different combinations of data to explore their sensitivity to various EoS parameters within a reasonably short time.

    nucl-thastro-ph.GAastro-ph.SRgr-qcPRD(2024)·9 citations
  6. 06

    A unitary coupled-channel three-body amplitude with pions and kaons

    Yuchuan Feng🇺🇸 · Fernando Gil🇪🇸 · Michael Döring🇺🇸 · Raquel Molina🇪🇸 · Maxim Mai🇺🇸 · Vanamali Shastry🇺🇸 · Adam Szczepaniak🇺🇸

    Three-body dynamics above threshold is required for the reliable extraction of many amplitudes and resonances from experiment and lattice QCD. The S-matrix principle of unitarity can be used to construct dynamical coupled-channel approaches in which three particles scatter off each other, re-arranging two-body subsystems by particle exchange. This paper reports the development of a three-body coupled-channel, amplitude including pions and kaons. The unequal-mass amplitude contains two-body S- and P-wave subsystems ("isobars") of all isospins, , and it also allows for transitions within a given isobar. The , and resonances are included, apart from repulsive isobars. Different methods to evaluate the amplitude for physical momenta are discussed. Production amplitudes for quantum numbers are shown as a proof of principle for the numerical implementation.

    nucl-thhep-lathep-phnucl-exPRD(2024)·27 citations

Affiliations

first authorsco-authorsvia INSPIRE