PaperPanorama

Nuclear Experiment·nucl-ex

Tue·Apr 5, 2022

9 papers—4 primary·5 cross-listed·reconstructed*

  1. 01*

    Exploring terra incognita in the phase diagram of strongly interacting matter -- Experiments at FAIR and NICA

    Peter Senger🇩🇪

    The fundamental properties of dense nuclear matter, as it exists in the core of massive stellar objects, are still largely unknown. The investigation of the high-density equation of state (EOS), which determines mass and radii of neutron stars and the dynamics of neutron star mergers, is in the focus of astronomical observations and of laboratory experiments with heavy-ion collisions. Moreover, the microscopic degrees-of-freedom of strongly interacting matter at high baryon densities are also unknown. While Quantum-Chromo-Dynamics (QCD) calculations on the lattice find a smooth chiral crossover between hadronic matter and the quark-gluon plasma for high temperatures at zero baryon chemical potential, effective models predict a 1st order chiral transition with a critical endpoint for matter at large baryon chemical potentials. Up to date, experimental data both on the high-density EOS and on a possible phase transition in dense baryonic matter are very scarce. In order to explore this terra incognita, dedicated experimental programs are planned at future heavy-ion research centres: the CBM experiment at FAIR, and the MPD and BM@N experiments at NICA. The research programs and the layout of these experiments will be presented. The future results of these laboratory experiments will complement astronomical observations concerning the EOS, and, in addition, will shed light on the microscopic degrees of freedom of QCD matter at neutron star core densities.

    nucl-exnucl-thPhys.Scripta(2022)·10 citations
  2. 02*

    Hypernuclei and Antihypernuclei Production in Heavy-Ion Collisions

    Yue Hang Leung🇺🇸

    In these proceedings, an overview of recent hypernuclei measurements in heavy ion collisions is presented. These results include the lifetime, binding energy, production yield, and directed flow in heavy ion collisions. These results provide constraints on the hyperon-nucleon interaction, enhance our understanding in hypernuclear structure, and provide insight on the production mechanisms of hypernuclei in heavy ion collisions.

    nucl-exEPJ Web Conf.(2022)·2 citations
  3. 03*

    Zn -delayed proton emission establishes the Ni -process waiting point bypass

    M. Saxena🇺🇸 · W.-J Ong🇺🇸 · Z. Meisel🇺🇸 · D. E. M. Hoff🇺🇸 · N. Smirnova🇫🇷 · P. C. Bender🇺🇸 · S. P. Burcher🇺🇸 · M. P. Carpenter🇺🇸 · J. J. Carroll🇺🇸 · A. Chester🇺🇸 · C. J. Chiara🇺🇸 · R. Conaway🇺🇸 and 23 other authors

    We measured the Zn -delayed proton (p) and emission at the National Superconducting Cyclotron Laboratory. We find a Zn half-life of 43.6 0.2 ms, p branching ratio of (84.7 1.4)%, and identify four transitions corresponding to the exotic -- decay mode, the second such identification in the -shell. The ratio was used to correct for isospin mixing while determining the Zn mass via the isobaric multiplet mass equation. Previously, it was uncertain as to whether the rp-process flow could bypass the textbook waiting point Ni for astrophysical conditions relevant to Type-I X-ray bursts. Our results definitively establish the existence of the Ni bypass, with 14-17% of the -process flow taking this route.

    nucl-exastro-ph.HEastro-ph.SRPLB(2022)·9 citations
  4. 04*

    Tomography of Ultra-relativistic Nuclei with Polarized Photon-gluon Collisions

    STAR Collaboration: M. S. Abdallah🇪🇬 · B. E. Aboona🇺🇸 · J. Adam🇺🇸 · L. Adamczyk🇵🇱 · J. R. Adams🇺🇸 · J. K. Adkins🇺🇸 · G. Agakishiev🇷🇺 · I. Aggarwal🇮🇳 · M. M. Aggarwal🇮🇳 · Z. Ahammed🇮🇳 · A. Aitbaev🇷🇺 · I. Alekseev🇷🇺 and 382 other authors

    A linearly polarized photon can be quantized from the Lorentz-boosted electromagnetic field of a nucleus traveling at ultra-relativistic speed. When two relativistic heavy nuclei pass one another at a distance of a few nuclear radii, the photon from one nucleus may interact through a virtual quark-antiquark pair with gluons from the other nucleus forming a short-lived vector meson (e.g. ). In this experiment, the polarization was utilized in diffractive photoproduction to observe a unique spin interference pattern in the angular distribution of decays. The observed interference is a result of an overlap of two wave functions at a distance an order of magnitude larger than the travel distance within its lifetime. The strong-interaction nuclear radii were extracted from these diffractive interactions, and found to be fm () and fm (), larger than the nuclear charge radii. The observable is demonstrated to be sensitive to the nuclear geometry and quantum interference of non-identical particles.

    nucl-exnucl-thquant-phSci.Adv.(2023)·82 citations
  5. 05*

    Virtual extrapolation technique for retracing line of response of single scattered events in positron emission tomography

    Satyajit Ghosh · Pragya Das🇮🇳

    Purpose: The scattering phenomenon creates degrading effects in positron emission tomography (PET) and the corresponding events are rejected conventionally. We have proposed a mathematical model to retrace the original line of response of the single-scattered coincident events with the aim to incorporate such events in PET. Methods: We have devised a new Virtual extrapolation technique based on the concept of the probability density functions. Through which we transformed the original two-parameter list mode data for the coincident photon pairs to a one-parameter data set. The procedure of random sampling and sampling distribution - by utilizing some unique properties like a collective difference and the length compensation - was employed in the data analysis. We studied the effect of finite timing and energy resolution of detectors on the performance of the proposed model. Results: We determined the frequency of occurrence of the data values corresponding to real as well as fictitious scattering points { placed on the arc of a circle drawn with the constant scattering angle - to observe the highest counts. As expected, we found the highest counts at the location of real scattering points. The model was evaluated for a uniform attenuating phantom medium. The results were found impressive for the case of ideal time and energy information, less so for the cases of finite resolutions. Conclusions: Our work outlines a completely new approach; though, a lot more sophistication is required for its practical utility. Nonetheless, the technique seems promising in developing a potential approach to improve the sensitivity of PET imaging.

    ↳ physics.med-phnucl-ex0 citations
  6. 06*

    Nuclear structure properties of Si and P isotopes with the microscopic effective interactions

    Priyanka Choudhary🇮🇳 · Praveen C. Srivastava🇮🇳

    In the present work, we have reported comprehensive study of the -shell nuclei Si and P with neutron number varying from to using the microscopic effective valence shell interactions, namely, N3LO, JISP16 and DJ16A. These effective -shell interactions are developed using the \textit{ab initio} no-core shell model wave functions and the Okubo-Lee-Suzuki transformation method. For comparison, we have also performed shell model calculations with the empirical USDB interaction. Energy spectra and electromagnetic properties of these isotopic chains have been studied. Theoretically calculated shell model results are compared with the available experimental data, to check the predictive strength of these microscopic interactions. It is found that the binding energies of the ground states are better reproduced with the DJ16A interaction as compared to other microscopic interactions and a proton subshell closure at is obtained in Si. Spin-tensor decomposition of two-body interaction is presented to understand the contributions from central, vector and tensor components into these interactions. Spectroscopic strengths of Al(,)Si are examined for the newly performed experiment at NSCL.

    ↳ nucl-thnucl-exNPA(2023)·7 citations
  7. 07*

    Multiparticle azimuthal cumulants from transverse momentum conservation and collective flow

    Mu-Ting Xie🇨🇳 · Guo-Liang Ma🇨🇳 · Adam Bzdak🇵🇱

    We calculate the th order of -particle azimuthal cumulants based on transverse momentum conservation (TMC) and collective flow (n=2,3). We demonstrate that the TMC effect only leads to a nonzero with the sign of and the magnitude inversely proportional to . The interplay between TMC and collective flow can change the signs of , and at some values of multiplicity , which could provide a good probe to study the onset of collectivity and search for the substructure of proton in small colliding systems.

    ↳ nucl-thhep-phnucl-exPRC(2022)·7 citations
  8. 08*

    Spin and polarization: a new direction in relativistic heavy ion physics

    F. Becattini (University of Florence)🇮🇹

    Since the first evidence of a global polarization of hyperons in relativistic nuclear collisions in 2017, spin has opened a new window in the field, both at experimental and theoretical level, and an exciting perspective. The current state of the field is reviewed with regard to the theoretical understanding of the data, reporting on the most recent achievements and envisioning possible developments. The intriguing connections of spin physics in relativistic matter with fundamental questions in quantum field theory and applications in the non-relativistic domain are discussed.

    ↳ nucl-thhep-phnucl-exRept.Prog.Phys.(2022)·88 citations
  9. 09*

    Ab Initio Nuclear Reaction Theory with Applications to Astrophysics

    Petr Navratil🇨🇦 · Sofia Quaglioni🇺🇸

    We present an introduction to ab initio nuclear theory with a focus on nuclear reactions. After a high-level overview of ab initio approaches in nuclear physics, we give a more detailed description of the no-core shell model technique equivalent to a large extent to configuration-interaction methods applied in quantum chemistry. We then introduce the no-core shell model with continuum approach that provides a quantum many-body description of nuclear reactions. After a brief review of nuclear reactions important for astrophysics, we present examples of results of ab initio calculations of radiative capture and transfer reactions in light nuclei.

    ↳ nucl-thnucl-ex7 citations

* Reconstructed cohort: no mailing for this day survives in the archive. Papers are grouped by their submission times and arXiv's announcement cut-off, assuming announcement without delay; positions follow identifier order. Validated at ~91% exact-day agreement against the archived era.