PaperPanorama

Nuclear Theory·nucl-th

Monday·May 29, 2023

8 papers3 primary·5 cross-listed

  1. 04

    Power Counting to Saturation

    Iain Stewart🇺🇸 · Varun Vaidya🇺🇸

    We present a description of saturation in small deep inelastic scattering from power counting in a top-down effective theory derived from QCD. A factorization formula isolates the universal physics of the nucleus at leading power in . The onset of saturation is then understood as a breakdown in the expansion in an emergent power counting parameter, which is defined by the matrix element of a gauge invariant operator. We identify a new radiation mode, which enables us to extend previous literature by distinguishing the appearance of the saturation scale from the transition to non-linear evolution.

    hep-phnucl-thPRD(2024)·11 citations
  2. 05

    Model independent analysis of femtoscopic correlation functions: An application to the

    Natsumi Ikeno🇯🇵 · Genaro Toledo🇲🇽 · Eulogio Oset🇪🇸

    We face the inverse problem of obtaining the interaction between coupled channels from the correlation functions of these channels. We apply the method to the interaction of the , , and channels, from where the state emerges. We use synthetic data extracted from an interaction model based on the local hidden gauge approach and find that the inverse problem can determine the existence of a bound state of the system with a precision of about 20 MeV. At the same time, we can determine the isospin nature of the bound state and its compositeness in terms of the channels. Furthermore, we evaluate the scattering length and effective range of all three channels, as well as the couplings of the bound state found to all the components. Lastly, the size parameter of the source function, , which in principle should be a magnitude provided by the experimental teams, can be obtained from a fit to the data with relatively high accuracy. These findings show the value of the correlation function to learn about the meson-meson interaction for systems which are difficult to access in other present facilities.

    hep-phnucl-thPLB(2023)·63 citations
  3. 06

    Simultaneous -ray and electron spectroscopy of Hg isotopes

    M. Stryjczyk🇧🇪 · B. Andel🇧🇪 · J. G. Cubiss🇨🇭 · K. Rezynkina🇧🇪 · T. R. Rodríguez🇪🇸 · J. E. García-Ramos🇪🇸 · A. N. Andreyev🇬🇧 · J. Pakarinen🇫🇮 · P. Van Duppen🇧🇪 · S. Antalic🇸🇰 · T. Berry🇬🇧 · M. J. G. Borge🇪🇸 and 39 other authors

    Background: The mercury isotopes around are a well-known example of nuclei exhibiting shape coexistence. Mixing of configurations can be studied by measuring the monopole strength , however, currently the experimental information is scarce and lacks precision, especially for the () transitions. Purpose: The goals of this study were to increase the precision of the known branching ratios and internal conversion coefficients, to increase the amount of available information regarding excited states in Hg and to interpret the results in the framework of shape coexistence using different models. Method: The low-energy structures in Hg were populated in the decay of Tl, produced at ISOLDE and purified by laser ionization and mass separation. The -ray and internal conversion electron events were detected by five germanium clover detectors and a segmented silicon detector, respectively, and correlated in time to build decay schemes. Results: In total, 193, 178 and 156 transitions, including 144, 140 and 108 observed for the first time in a -decay experiment, were assigned to Hg, respectively. Internal conversion coefficients were determined for 23 transitions, out of which 12 had an component. Extracted branching ratios allowed the sign of the interference term in Hg as well as and in Hg to be determined. By means of electron-electron coincidences, the state was identified in Hg. The experimental results were qualitatively reproduced by five theoretical approaches, the IBM with configuration mixing with two different parametrizations, the General Bohr Hamiltonian, the BMF model and the SCCM model. However, a quantitative description is lacking.

    nucl-exnucl-thPRC(2023)·0 citations
  4. 07

    Connections and performances of Green's function methods for charged and neutral excitations

    Enzo Monino · Pierre-François Loos

    In recent years, Green's function methods have garnered considerable interest due to their ability to target both charged and neutral excitations. Among them, the well-established approximation provides accurate ionization potentials and electron affinities and can be extended to neutral excitations using the Bethe-Salpeter equation (BSE) formalism. Here, we investigate the connections between various Green's function methods and evaluate their performance for charged and neutral excitations. Comparisons with other widely-known second-order wave function methods are also reported. Additionally, we calculate the singlet-triplet gap of cycl[3,3,3]azine, a model molecular emitter for thermally activated delayed fluorescence, which has the particularity of having an inverted gap thanks to a substantial contribution from the double excitations. We demonstrate that, within the approximation, a second-order BSE kernel with dynamical correction is required to predict this distinctive characteristic.

    physics.chem-phcond-mat.mtrl-scicond-mat.str-elnucl-th+1J.Chem.Phys.(2023)·11 citations
  5. 08

    Cabibbo suppressed hyperon production off nuclei induced by antineutrinos

    M. Benitez Galan🇪🇸 · L. Alvarez-Ruso🇪🇸 · M. Rafi Alam🇮🇳 · I. Ruiz Simo🇪🇸 · M.J. Vicente Vacas🇪🇸

    In this work we study the production of and hyperons in strangeness changing charged current interactions of muon antineutrinos on nuclear targets. At the nucleon level, besides quasielastic scattering we consider the inelastic mechanism in which a pion is produced alongside the hyperon. Its relevance for antineutrinos with energies below 2 GeV is conveyed in integrated and differential cross sections. We observe that the distributions on the angle between the hyperon and the final lepton are clearly different for quasielastic and inelastic processes. Hyperon final state interactions, modeled with an intranuclear cascade, lead to a significant transfer from primary produced 's into final 's. They also cause considerable energy loss, which is apparent in hyperon energy distributions. We have investigated production off Ar in the conditions of the recently reported MicroBooNE measurement. We find that the contribution, dominated by excitation, accounts for about one third of the cross section.

    hep-phnucl-thPRD(2024)·4 citations

Affiliations

first authorsco-authorsvia INSPIRE