PaperPanorama

Nuclear Theory·nucl-th

Monday·October 10, 2016

11 papers6 primary·5 cross-listed

  1. 07

    The Asymptotic Form of Non-Global Logarithms, Black Disc Saturation, and Gluonic Deserts

    Duff Neill🇺🇸

    We develop an asymptotic perturbation theory for the large logarithmic behavior of the non-linear integro-differential equation describing the soft correlations of QCD jet measurements, the Banfi-Marchesini-Smye (BMS) equation. This equation captures the late-time evolution of radiating color dipoles after a hard collision. This allows us to prove that at large values of the control variable (the non-global logarithm, a function of the infra-red energy scales associated with distinct hard jets in an event), the distribution has a gaussian tail. We compute the decay width analytically, giving a closed form expression, and find it to be jet geometry independent, up to the number of legs of the dipole in the active jet. Enabling the asymptotic expansion is the correct perturbative seed, where we perturb around an anzats encoding formally no real emissions, an intuition motivated by the buffer region found in jet dynamics. This must be supplemented with the correct application of the BFKL approximation to the BMS equation in collinear limits. Comparing to the asymptotics of the conformally related evolution equation encountered in small-x physics, the Balitisky-Kovchegov (BK) equation, we find that the asymptotic form of the non-global logarithms directly maps to the black-disc unitarity limit of the BK equation, despite the contrasting physical pictures. Indeed, we recover the equations of saturation physics in the final state dynamics of QCD.

    hep-phnucl-thJHEP(2017)·27 citations
  2. 08

    Effective field theory approach to open heavy flavor production in heavy-ion collisions

    Zhong-Bo Kang🇺🇸 · Felix Ringer🇺🇸 · Ivan Vitev🇺🇸

    We develop a version of Soft Collinear Effective Theory (SCET) which includes finite quark masses, as well as Glauber gluons that describe the interaction of collinear partons with QCD matter. In the framework of this new effective field theory, labeled SCET, we derive the massive splitting functions in the vacuum and the QCD medium for the processes , and . The numerical effects due to finite quark masses are sizable and our results are consistent with the traditional approach to parton energy loss in the soft gluon emission limit. In addition, we present a new framework for including the medium-induced full splitting functions consistent with next-to-leading order calculations in QCD for inclusive hadron production. Finally, we show numerical results for the suppression of - and -mesons in heavy ion collisions at TeV and 2.76 TeV and compare to available data from the LHC.

    hep-phhep-exnucl-exnucl-thJHEP(2017)·114 citations
  3. 09

    K-K-pp - an important gateway toward multi-kaonic nuclei

    Shuji Maeda🇯🇵 · Yoshinori Akaishi🇯🇵 · Toshimitsu Yamazaki🇯🇵

    Based on our Faddeev-Yakubowsky calculations of four-body kaonic nuclear systems it was revealed that the structure of K-K-pp is well approximated by two Lambda*=K-p's with strong mutual attraction. It is vitally important to study this nucleus, as it is an essential gateway toward multi-Lambda* nuclei. Two experimental proposals are presented: i) production of K-K-pp by p+p reactions at T_p = 7 GeV, and ii) search for K-K-pp from the invariant mass of M(Lambda-Lambda) around 2.6 GeV/c2 in high-energy HI reactions.

    nucl-exnucl-thJPS Conf.Proc.(2017)·3 citations
  4. 10

    Prompt photon production and photon-hadron jet correlations with POWHEG

    T. Jezo🇮🇹 · M. Klasen🇩🇪 · F. König🇩🇪

    We present a calculation of direct photon production at next-to-leading order of QCD and a matching of this calculation with parton showers using POWHEG BOX. Based on simulations with POWHEG+PYTHIA, we perform a detailed phenomenological analysis of PHENIX data on prompt photon production and photon-hadron jet correlations in pp collisions at RHIC, considerably improving the description of these data with respect to previous calculations, and we suggest additional interesting analyses.

    hep-phhep-exnucl-exnucl-thJHEP(2016)·30 citations
  5. 11

    Binding Blocks: building the Universe one nucleus at the time

    C. Aa. Diget · A. Pastore · K. Leech · T. Haylett · S. Lock · T. Sanders · M. Shelley · H. V. Willett · J. Keegans · L. Sinclair · E. C. Simpson

    We present a new teaching and outreach activity based around the construction of a three-dimensional chart of isotopes using LEGO bricks. The activity, \emph{Binding Blocks}, demonstrates nuclear and astrophysical processes through a seven-meter chart of all nuclear isotopes, built from over 26,000 LEGO bricks. It integrates A-level and GCSE curricula across areas of nuclear physics, astrophysics, and chemistry, including: nuclear decays (through the colours in the chart); nuclear binding energy (through tower heights); production of chemical elements in the cosmos; fusion processes in stars and fusion energy on Earth; as well as links to medical physics, particularly diagnostics and radiotherapy.

    physics.ed-phnucl-exnucl-thphysics.pop-phPhys.Educ.(2017)·6 citations

Affiliations

first authorsco-authorsvia INSPIRE