PaperPanorama

Nuclear Experiment·nucl-ex

Wed·Apr 27, 2022

5 papers—2 primary·3 cross-listed·reconstructed*

  1. 01*

    Heavy-Ion Collisions toward High-Density Nuclear Matter

    Shoji Nagamiya🇯🇵

    In the present paper, the current efforts in heavy-ion collisions toward high-density nuclear matter will be discussed. First, the essential points learned from RHIC and LHC will be reviewed. Then, the present data from the STAR Beam Energy Scan are discussed. Finally, the current efforts, NICA, FAIR, HIAF, and J-PARC-HI (heavy ion) are described. In particular, the efforts of the J-PARC-HI project are described in detail.

    nucl-exEntropy(2022)·7 citations
  2. 02*

    Damping of the isovector giant dipole resonance in Ca

    J. Carter (1)🇿🇦 · L.M. Donaldson (1,2)🇿🇦 · H. Fujita (3) · Y. Fujita (3) · M. Jingo (1,4) · C.O. Kureba (1,5) · M.B. Latif (1,6)🇿🇦 · E. Litvinova (7)🇺🇸 · F. Nemulodi (2)🇿🇦 · P. von Neumann-Cosel (8)🇩🇪 · R. Neveling (2)🇿🇦 · P. Papakonstantinou (9)🇰🇷 and 12 other authors

    The fine structure of the IsoVector Giant Dipole Resonance (IVGDR) in the doubly-magic nuclei Ca observed in inelastic proton scattering experiments under is used to investigate the role of different mechanisms contributing to the IVGDR decay width. Characteristic energy scales are extracted from the fine structure by means of wavelet analysis. The experimental scales are compared to different theoretical approaches allowing for the inclusion of complex configurations beyond the mean-field level. Calculations are performed in the framework of RPA and beyond-RPA in a relativistic approach based on an effective meson-exchange interaction, with the UCOM effective interaction and, for the first time, with realistic two- plus three-nucleon interactions from chiral effective field theory employing the in-medium similarity renormalization group. All models highlight the role of Landau fragmentation for the damping of the IVGDR, while the differences in the coupling strength between one particle-one hole (1p-1h) and two particle-two hole (2p-2h) correlated (relativistic) and non-correlated (non-relativistic) configurations lead to very different pictures of the importance of the spreading width resulting in wavelet scales being a sensitive measure of their interplay. The relativistic approach with particle-vibration coupling, in particular, shows impressive agreement with the number and absolute values of the scales extracted from the experimental data.

    nucl-exnucl-thPLB(2022)·16 citations
  3. 03*

    Quark and Gluon Helicity Evolution at Small : Revised and Updated

    Florian Cougoulic🇫🇮 · Yuri V. Kovchegov🇺🇸 · Andrey Tarasov🇺🇸 · Yossathorn Tawabutr🇺🇸

    We revisit the problem of small Bjorken- evolution of the gluon and flavor-singlet quark helicity distributions in the shock wave (-channel) formalism. Earlier works on the subject in the same framework resulted in an evolution equation for the gluon field-strength and quark "axial current" operators (sandwiched between the appropriate light-cone Wilson lines) in the double-logarithmic approximation (DLA: summing powers of with the strong coupling constant). In this work, we observe that an important mixing of the above operators with another gluon operator, , also sandwiched between the light-cone Wilson lines (with the repeated index summed over), was missing in the previous works. This operator has the physical meaning of the sub-eikonal (covariant) phase: its contribution to helicity evolution is shown to be proportional to another sub-eikonal operator, , which is related to the Jaffe-Manohar polarized gluon distribution. In this work we include this operator into small- helicity evolution, and construct a novel evolution mixing all three operators (, , and ), generalizing the previous results. We also construct closed DLA evolution equations in the large- and large- limits, with and the numbers of quark colors and flavors, respectively. Solving the large- equations numerically we obtain the following small- asymptotics of the quark and gluon helicity distributions and , along with the structure function, \[\Delta\Sigma(x,Q^2)\sim\Delta G(x,Q^2)\sim g_1(x,Q^2)\sim\left(\frac{1}{x}\right)^{3.66\,\sqrt{\frac{\alpha_s\,N_c}{2\pi}}},\] in complete agreement with the earlier work by Bartels, Ermolaev and Ryskin.

    ↳ hep-phhep-exnucl-exnucl-thJHEP(2022)·79 citations
  4. 04*

    Beyond the Standard Model with Lepton Flavor Universality Violation

    Andreas Crivellin🇨🇭 · Joaquim Matias🇪🇸

    In recent years, exciting (indirect) hints for physics beyond the Standard Model (SM) have been accumulated. In particular, semi-leptonic decays show deviations from the SM predictions, which, due to the ratios and are obviously related to lepton flavour universality violation (LFUV). However, {we point out} there are more anomalies which admit an interpretation in terms of LFUV: The anomalous magnetic moment of the muon, the Cabibbo angle anomaly, the CMS measurements of non-resonant di-electrons, the difference of the forward-backward asymmetry in and leptonic tau decays. In this letter we discuss the experimental and theoretical status of these anomalies, {compare their strength and weaknesses} and examine {and synthesize} how they can be explained in terms of possible extensions of the SM by new particles and interactions. Even though not all anomalies might be confirmed in the future, this unified view of the anomalies in terms of LFUV significantly strengthens their relevance, which is crucial in order to construct a convincing physics case for future colliders.

    ↳ hep-phhep-exhep-latnucl-ex+116 citations
  5. 05*

    Imaging of PbWO4 Crystals for G Experiment Test Masses Using a Laser Interferometer

    K. T. A. Assumin-Gyimah🇺🇸 · M. G. Holt · D. Dutta🇺🇸 · W. M. Snow🇺🇸

    It is highly desirable for future measurements of Newton's gravitational constant to use test/source masses that allow nondestructive, quantitative internal density gradient measurements. High density optically transparent materials are ideally suited for this purpose since their density gradient can be measured with laser interferometry, and they allow in-situ optical metrology methods for the critical distance measurements often needed in a apparatus. We present an upper bound on possible internal density gradients in lead tungstate (PbWO) crystals determined using a laser interferometer. We placed an upper bound on the fractional atomic density gradient in two PbWO test crystals of cm. This value is more than two orders of magnitude smaller than what is required for measurements. They are also consistent with but more sensitive than a recently reported measurements of the same samples, using neutron interferometry. These results indicate that PbWO crystals are well suited to be used as test masses in experiments. Future measurements of internal density gradients of test masses used for measurements of can now be conducted non-destructively for a wide range of possible test masses.

    ↳ physics.ins-detgr-qcnucl-exClass.Quant.Grav.(2022)·3 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.