PaperPanorama

Nuclear Theory·nucl-th

Friday·December 21, 2018

16 papers7 primary·9 cross-listed

  1. 08

    [Submitted on 19 Dec 2018] (cross-list from hep-ph)

    PHOTON-2017 conference proceedings

    David d'Enterria · Albert de Roeck · Michelangelo Mangano (eds.) · Jaroslav Adam · Massimiliano Alvioli · Christopher D. Anson · Hamed Bakhshiansohi · Cristian Baldenegro · Valerio Bertone · Stanley J. Brodsky · Peter J. Bussey · Chav Chhiv Chau and 69 other authors

    This document collects the proceedings of the PHOTON 2017 conference ("International Conference on the Structure and the Interactions of the Photon", including the 22th "International Workshop on Photon-Photon Collisions", and the "International Workshop on High Energy Photon Colliders") held at CERN (Geneva) in May 2017. The latest experimental and theoretical developments on the topics of the PHOTON conference series are covered: (i) processes in ee, proton-proton (pp) and nucleus-nucleus (AA) collisions at current and future colliders, (ii) -hadron interactions in ep, pp, and AA collisions, (iii) final-state photon production (including Standard Model studies and searches beyond it) in pp and AA collisions, and (iv) high-energy -ray astrophysics. These proceedings are dedicated to the memory of Maria Krawczyk.

    Comments:
    296 pages. CERN-Proceedings-2018-001 (CERN, Geneva, 2018), to appear. arXiv admin note: substantial text overlap with arXiv:1804.05614, arXiv:1708.06683, arXiv:1709.09044, arXiv:1708.00912, arXiv:1708.07173, arXiv:1709.02985, arXiv:1709.00176, arXiv:1709.05167, arXiv:1708.05756, arXiv:1708.09759, arXiv:1708.07531, arXiv:1703.08450, arXiv:1711.02551, arXiv:1511.07794, arXiv:1712.10104, arXiv:1708.05776, arXiv:1712.10202, arXiv:1709.07110, arXiv:1702.08730, arXiv:1709.02648, arXiv:1411.6397
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Experiment (hep-ex); Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th)
    arXiv:
    1812.08166 [pdf]
    CERN Proc.(2018)·6 citations
  2. 09

    [Submitted on 19 Dec 2018] (cross-list from astro-ph.HE)

    Equation of state sensitivities when inferring neutron star and dense matter properties

    S. K. Greif · G. Raaijmakers · K. Hebeler · A. Schwenk · A. L. Watts

    Understanding the dense matter equation of state at extreme conditions is an important open problem. Astrophysical observations of neutron stars promise to solve this, with NICER poised to make precision measurements of mass and radius for several stars using the waveform modelling technique. What has been less clear, however, is how these mass-radius measurements might translate into equation of state constraints and what are the associated equation of state sensitivities. We use Bayesian inference to explore and contrast the constraints that would result from different choices for the equation of state parametrization; comparing the well-established piecewise polytropic parametrization to one based on physically motivated assumptions for the speed of sound in dense matter. We also compare the constraints resulting from Bayesian inference to those from simple compatibility cuts. We find that the choice of equation of state parametrization and particularly its prior assumptions can have a significant effect on the inferred global mass-radius relation and the equation of state constraints. Our results point to important sensitivities when inferring neutron star and dense matter properties. This applies also to inferences from gravitational wave observations.

    Comments:
    to appear in MNRAS
    Subjects:
    High Energy Astrophysical Phenomena (astro-ph.HE); Solar and Stellar Astrophysics (astro-ph.SR); Nuclear Theory (nucl-th)
    arXiv:
    1812.08188 [pdf]
    MNRAS(2019)·195 citations
  3. 10

    [Submitted on 19 Dec 2018] (cross-list from hep-ph)

    Subleading Power Rapidity Divergences and Power Corrections for

    Markus A. Ebert🇺🇸 · Ian Moult🇺🇸 · Iain W. Stewart🇺🇸 · Frank J. Tackmann🇩🇪 · Gherardo Vita🇺🇸 · Hua Xing Zhu🇨🇳

    A number of important observables exhibit logarithms in their perturbative description that are induced by emissions at widely separated rapidities. These include transverse-momentum () logarithms, logarithms involving heavy-quark or electroweak gauge boson masses, and small- logarithms. In this paper, we initiate the study of rapidity logarithms, and the associated rapidity divergences, at subleading order in the power expansion. This is accomplished using the soft collinear effective theory (SCET). We discuss the structure of subleading-power rapidity divergences and how to consistently regulate them. We introduce a new pure rapidity regulator and a corresponding -like scheme, which handles rapidity divergences while maintaining the homogeneity of the power expansion. We find that power-law rapidity divergences appear at subleading power, which give rise to derivatives of parton distribution functions. As a concrete example, we consider the spectrum for color-singlet production, for which we compute the complete suppressed power corrections at , including both logarithmic and nonlogarithmic terms. Our results also represent an important first step towards carrying out a resummation of subleading-power rapidity logarithms.

    Comments:
    40 pages + appendices, 3 figures; v2: TMD collaboration included in acknowledgement; v3: minor changes, journal version
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    1812.08189 [pdf]
    JHEP(2019)·163 citations
  4. 11

    [Submitted on 19 Dec 2018] (cross-list from hep-ph)

    QCD Sum Rules Approach to the and States

    Raphael M. Albuquerque🇧🇷 · Jorgivan M. Dias🇧🇷 · K. P. Khemchandani🇧🇷 · A. Martinez Torres🇧🇷 · Fernando S. Navarra🇧🇷 · Marina Nielsen🇧🇷 · Carina M. Zanetti🇧🇷

    In the past decade, due to the experimental observation of many charmonium-like states, there has been a revival of hadron spectroscopy. In particular, the experimental observation of charged charmonium-like, states, and bottomonium-like, states, represents a challenge since they can not be accommodated within the naive quark model. These charged states are good candidates of either tetraquark or molecular states and their observation motivated a vigorous theoretical activity. This is a rapidly evolving field with enormous amount of new experimental information. In this work, we review the current experimental progress and investigate various theoretical interpretations of these candidates of the multiquark states. The present review is written from the perspective of the QCD sum rules approach, where we present the main steps of concrete calculations and compare the results with other approaches and with experimental data.

    Comments:
    90 pages, 27 figures; to be published in Journal of Physics G
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    1812.08207 [pdf]
    J.Phys.G(2019)·152 citations
  5. 12

    [Submitted on 19 Dec 2018] (cross-list from hep-ph)

    Slow neutron production as a probe of hadron formation in high-energy reactions

    A.B. Larionov🇩🇪 · M. Strikman🇺🇸

    Deep Inelastic Scattering (DIS) experiments at the planned Electron-Ion Collider will be affected by details of the hadron formation inside the nuclear volume. Besides semi-inclusive particle production experiments decays of the target nucleus via emission of neutrons provide an additional opportunity to probe this domain. This paper reports on the hybrid dynamical+statistical calculations of low-energy neutron production in muon- and virtual photon-induced collisions with nuclei. We confirm the conclusion that the E665 data on neutron production in + Pb DIS at 470 GeV indicate a strong suppression of the final state interaction for hadrons with momenta above GeV/c. Ultraperipheral heavy-ion collisions at the Large Hadron Collider (LHC) and the Relativistic Heavy Ion Collider (RHIC) can be used to test this suppression. The calculations of the neutron multiplicity distributions and -spectra in photon - nucleus collisions at the energies accessible at the LHC and RHIC are presented for several models of hadron formation. We argue that studies of neutron production in ultraperipheral heavy ion collisions open a new window on the small- dynamics and hadron component of the photon wave function.

    Comments:
    34 pages, 10 figures, revised sec. 1 and 2, main results and conclusions unchanged, version accepted in Phys. Rev. C
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Experiment (hep-ex); Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th)
    arXiv:
    1812.08231 [pdf]
    PRC(2020)·13 citations
  6. 13

    [Submitted on 19 Dec 2018] (cross-list from physics.data-an)

    Event-shape engineering and heavy-flavour observables in relativistic heavy-ion collisions

    A. Beraudo🇮🇹 · A. De Pace🇮🇹 · M. Monteno🇮🇹 · M. Nardi🇮🇹 · F. Prino🇮🇹

    Traditionally, events collected at relativistic heavy-ion colliders are classified according to some centrality estimator (e.g. the number of produced charged particles) related to the initial energy density and volume of the system. In a naive picture the latter are directly related to the impact parameter of the two nuclei, which sets also the initial eccentricity of the system: zero in the case of the most central events and getting larger for more peripheral collisions. A more realistic modelling requires to take into account event-by-event fluctuations, in particular in the nucleon positions within the colliding nuclei: collisions belonging to the same centrality class can give rise to systems with different initial eccentricity and hence different flow harmonics for the final hadron distributions. This issue can be addressed by an event-shape-engineering analysis, consisting in selecting events with the same centrality but different magnitude of the average bulk anisotropic flow and therefore of the initial-state eccentricity. In this paper we present the implementation of this analysis in the POWLANG transport model, providing predictions for the transverse-momentum and angular distributions of charm and beauty hadrons for event-shape selected collisions. In this way it is possible to get information on how the heavy quarks propagating (and hadronizing) in a hot environment respond both to its energy density and to its geometric asymmetry, breaking the perfect correlation between eccentricity and impact parameter which characterizes a modelling of the medium based on smooth average initial conditions

    Subjects:
    Data Analysis, Statistics and Probability (physics.data-an); High Energy Physics — Phenomenology (hep-ph); Nuclear Experiment (nucl-ex); Nuclear Theory (nucl-th)
    arXiv:
    1812.08337 [pdf]
    EPJC(2019)·20 citations
  7. 14

    [Submitted on 20 Dec 2018] (cross-list from hep-ph)

    A theoretical analysis of the doubly radiative decays and

    Rafel Escribano🇪🇸 · Sergi Gonzàlez-Solís🇨🇳 · Renata Jora🇷🇴 · Emilio Royo🇪🇸

    The scalar and vector meson exchange contributions to the doubly radiative decays and are analysed within the Linear Sigma Model and Vector Meson Dominance frameworks, respectively. Predictions for the diphoton invariant mass spectra and the associated integrated branching ratios are given and compared with current available experimental data. Whilst a satisfactory description of the shape of the and decay spectra is obtained, thus supporting the validity of the approach, the corresponding branching ratios cannot be reproduced simultaneously. A first theoretical prediction for the recently measured by the BESIII collaboration is also presented.

    Comments:
    16 pages, 4 figures, 2 tables; v2: includes experimental measurement for the , a better treatment for the propagator and a new discussion on the values of the couplings
    Subjects:
    High Energy Physics — Phenomenology (hep-ph); High Energy Physics — Experiment (hep-ex); Nuclear Theory (nucl-th)
    arXiv:
    1812.08454 [pdf]
    PRD(2020)·42 citations
  8. 15

    [Submitted on 20 Dec 2018] (cross-list from hep-lat)

    Finite-density gauge correlation functions in QC2D

    Tamer Boz🇮🇪 · Ouraman Hajizadeh🇦🇹 · Axel Maas🇦🇹 · Jon-Ivar Skullerud🇮🇪

    2-color QCD is the simplest QCD-like theory which is accessible to lattice simulations at finite density. It therefore plays an important role to test qualitative features and to provide benchmarks to other methods and models, which do not suffer from a sign problem. To this end, we determine the minimal-Landau-gauge propagators and 3-point vertices in this theory over a wide range of densities, the vacuum, and at both finite temperature and density. The results show that there is essentially no modification of the gauge sector in the low-temperature, low-density phase. Even outside this phase only mild modifications appear, mostly in the chromoelectric sector.

    Comments:
    45 pages, 23 figures, 1 table; v2: Some technical details added, minor modifications
    Subjects:
    High Energy Physics — Lattice (hep-lat); High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    1812.08517 [pdf]
    PRD(2019)·40 citations
  9. 16

    [Submitted on 20 Dec 2018] (cross-list from hep-lat)

    Consistency between Lüscher's finite volume method and HAL QCD method for two-baryon systems in lattice QCD

    Takumi Iritani🇯🇵 · Sinya Aoki🇯🇵 · Takumi Doi🇯🇵 · Tetsuo Hatsuda🇯🇵 · Yoichi Ikeda🇯🇵 · Takashi Inoue🇯🇵 · Noriyoshi Ishii🇯🇵 · Hidekatsu Nemura🇯🇵 · Kenji Sasaki🇯🇵

    There exist two methods to study two-baryon systems in lattice QCD: the direct method which extracts eigenenergies from the plateaux of the temporal correlator and the HAL QCD method which extracts observables from the non-local potential associated with the tempo-spatial correlator. Although the two methods should give the same results theoretically, qualitatively different results have been reported. Recently, we pointed out that the separation of the ground state from the excited states is crucial to obtain sensible results in the former, while both states provide useful signals in the latter. In this paper, we identify the contribution of each state in the direct method by decomposing the two-baryon correlators into the finite-volume eigenmodes obtained from the HAL QCD method. We consider the system in the S channel at GeV in 2+1 flavor lattice QCD using the wall and smeared quark sources. We demonstrate that the "pseudo-plateau" at early time slices (t = 1~2 fm) from the smeared source in the direct method indeed originates from the contamination of the excited states, and the true plateau with the ground state saturation is realized only at t > 5~15 fm corresponding to the inverse of the lowest excitation energy. We also demonstrate that the two-baryon operator can be optimized by utilizing the finite-volume eigenmodes, so that (i) the finite-volume energy spectra from the HAL QCD method agree with those from the optimized temporal correlator and (ii) the correct spectra would be accessed in the direct method only if highly optimized operators are employed. Thus we conclude that the long-standing issue on the consistency between the Lüscher's finite volume method and the HAL QCD method for two baryons is now resolved: They are consistent with each other quantitatively only if the excited contamination is properly removed in the former.

    Comments:
    34 pages, 17 figurs, published version
    Subjects:
    High Energy Physics — Lattice (hep-lat); High Energy Physics — Phenomenology (hep-ph); Nuclear Theory (nucl-th)
    arXiv:
    1812.08539 [pdf]
    JHEP(2019)·57 citations

Affiliations

first authorsco-authorsvia INSPIRE