PaperPanorama

Nuclear Theory·nucl-th

Tuesday·June 5, 2018

14 papers10 primary·4 cross-listed

  1. 11

    Production of dark-matter bound states in the early universe by three-body recombination

    Eric Braaten🇺🇸 · Daekyoung Kang🇨🇳 · Ranjan Laha🇩🇪

    The small-scale structure problems of the universe can be solved by self-interacting dark matter that becomes strongly interacting at low energy. A particularly predictive model for the self-interactions is resonant short-range interactions with an S-wave scattering length that is much larger than the range. The velocity dependence of the cross section in such a model provides an excellent fit to self-interaction cross sections inferred from dark-matter halos of galaxies and clusters of galaxies if the dark-matter mass is about 19 GeV and the scattering length is about 17 fm. Such a model makes definite predictions for the few-body physics of weakly bound clusters of the dark-matter particles. The formation of the two-body bound cluster is a bottleneck for the formation of larger bound clusters. We calculate the production of two-body bound clusters by three-body recombination in the early universe under the assumption that the dark matter particles are identical bosons, which is the most favorable case. If the dark-matter mass is 19 GeV and the scattering length is 17 fm, the fraction of dark matter in the form of two-body bound clusters can increase by as much as 4 orders of magnitude when the dark-matter temperature falls below the binding energy, but its present value remains less than 10^(-6). The present fraction can be increased to as large as 10^(-3) by relaxing the constraints from small-scale structure and decreasing the mass of the dark matter particle.

    hep-phastro-ph.COhep-exnucl-ex+1JHEP(2018)·38 citations
  2. 12

    Strong decay of as a state in the family

    Qi-Fang Lü🇨🇳 · Li-Ye Xiao🇨🇳 · Zuo-Yun Wang🇨🇳 · Xian-Hui Zhong🇨🇳

    Considering the mass, parity and decay mode, we tentatively assign the as the wave states with one radial excitation. Then, via studying the strong decay behavior of the within the model, we obtain that the total decay widths of the and states are 16.27 MeV and 25.39 MeV, respectively. Compared with the experimental total width measured by LHCb Collaboration, both assignments are allowed, and the assignment is more favorable. Other mode states are also investigated, which are most likely to be narrow states and have good potential to be observed in future experiments.

    hep-phhep-exnucl-thEPJC(2018)·43 citations
  3. 13

    Entanglement entropy, entropy production and time evolution in high energy QCD

    Alex Kovner🇺🇸 · Michael Lublinsky🇮🇱 · Mirko Serino🇮🇱

    Working in the framework of the Color Glass Condensate effective theory of high energy QCD, we revisit the momentum space entanglement entropy of the soft gluons produced in high energy dilute-dense collisions. We extend the work of~\cite{Kovner:2015hga} by considering entropy produced in a single event. This entropy arises due to decoherence of eigenstates with different energies during the time evolution after the collisions with the target. We define it rigorously as the entanglement entropy of the produced system with the experimental apparatus. We compute the time dependent single event entropy in the limit of weak projectile field. Further we compute the entropy for the ensemble of events defined by the McLerran-Venugopalan model for the projectile wave function. Interestingly the entropy of the ensemble has a much weaker time dependence than the entropy in any single event. We attribute this feature to the so called monogamy of entanglement.

    hep-phhep-thnucl-thPLB(2019)·57 citations
  4. 14

    Transversity generalized parton distributions for the deuteron

    W. Cosyn🇧🇪 · B. Pire🇫🇷

    Transversity generalized parton distributions (GPDs) appear as scalar functions in the decomposition of off-forward quark-quark and gluon-gluon correlators with a parton helicity flip. For a spin 1 hadron, we find 9 transversity GPDs for both quarks and gluons at leading twist 2. We study these twist-2 chiral odd quark transversity GPDs for the deuteron in a light cone convolution model, based on the impulse approximation, and using the lowest Fock-space state for the deuteron.

    hep-phnucl-exnucl-thPRD(2018)·35 citations

Affiliations

first authorsco-authorsvia INSPIRE