PaperPanorama

Nuclear Experiment·nucl-ex

Fri·Mar 27, 2015

4 papers0 primary·4 cross-listed·reconstructed*

  1. 01*

    On the Wong cross section and fusion oscillations

    N. Rowley🇫🇷 · K. Hagino🇯🇵

    We re-examine the well-known Wong formula for heavy-ion fusion cross sections. Although this celebrated formula yields almost exact results for single-channel calculations for relatively heavy systems such as O+Sm, it tends to overestimate the cross section for light systems such as C+C. We generalise the formula to take account of the energy dependence of the barrier parameters and show that the energy-dependent version gives results practically indistinguishable from a full quantal calculation. We then examine the deviations arising from the discrete nature of the intervening angular momenta, whose effect can lead to an oscillatory contribution to the excitation function. We recall some compact, analytic expressions for these oscillations, and highlight the important physical parameters that give rise to them. Oscillations in symmetric systems are discussed, as are systems where the target and projectile identities can be exchanged via a strong transfer channel.

    nucl-thnucl-ex0 citations
  2. 02*

    High sensitivity tests of the Pauli Exclusion Principle with VIP2

    J. Marton🇦🇹 · S. Bartalucci🇮🇹 · S. Bertolucci🇨🇭 · C. Berucci🇦🇹 · M. Bragadireanu🇷🇴 · M. Cargnelli🇦🇹 · C. Curceanu🇮🇹 · A. Clozza🇮🇹 · S. Di Matteo🇫🇷 · J.-P. Egger🇨🇭 · C. Guaraldo🇮🇹 · M. Iliescu🇮🇹 and 15 other authors

    The Pauli Exclusion Principle is one of the most fundamental rules of nature and represents a pillar of modern physics. According to many observations the Pauli Exclusion Principle must be extremely well fulfilled. Nevertheless, numerous experimental investigations were performed to search for a small violation of this principle. The VIP experiment at the Gran Sasso underground laboratory searched for Pauli-forbidden X-ray transitions in copper atoms using the Ramberg-Snow method and obtained the best limit so far. The follow-up experiment VIP2 is designed to reach even higher sensitivity. It aims to improve the limit by VIP by orders of magnitude. The experimental method, comparison of different PEP tests based on different assumptions and the developments for VIP2 are presented.

    quant-phnucl-exphysics.ins-detJ.Phys.Conf.Ser.(2015)·4 citations
  3. 03*

    Physics Opportunities with Meson Beams

    William J. Briscoe (GW)🇺🇸 · Michael Döring (GW)🇺🇸 · Helmut Haberzettl (GW)🇺🇸 · D. Mark Manley (KSU)🇺🇸 · Megumi Naruki (Kyoto Univ.)🇯🇵 · Igor I. Strakovsky (GW)🇺🇸 · Eric S. Swanson (Univ. of Pittsburgh)🇺🇸

    Over the past two decades, meson photo- and electro-production data of unprecedented quality and quantity have been measured at electromagnetic facilities worldwide. By contrast, the meson-beam data for the same hadronic final states are mostly outdated and largely of poor quality, or even nonexistent, and thus provide inadequate input to help interpret, analyze, and exploit the full potential of the new electromagnetic data. To reap the full benefit of the high-precision electromagnetic data, new high-statistics data from measurements with meson beams, with good angle and energy coverage for a wide range of reactions, are critically needed to advance our knowledge in baryon and meson spectroscopy and other related areas of hadron physics. To address this situation, a state of-the-art meson-beam facility needs to be constructed. The present paper summarizes unresolved issues in hadron physics and outlines the vast opportunities and advances that only become possible with such a facility.

    hep-phhep-exnucl-exnucl-thEPJA(2015)·55 citations
  4. 04*

    production and suppression in high energy proton-nucleus collisions

    Yan-Qing Ma🇺🇸 · Raju Venugopalan🇺🇸 · Hong-Fei Zhang🇨🇳

    We apply a Color Glass Condensate+Non-Relativistic QCD (CGC+NRQCD) framework to compute production in deuteron-nucleus collisions at RHIC and proton-nucleus collisions at the LHC. Our results match smoothly at high to a next-to-leading order perturbative QCD + NRQCD computation. Excellent agreement is obtained for spectra at RHIC and LHC for central and forward rapidities, as well as for the normalized ratio of these results to spectra in proton-proton collisions. In particular, we observe that the data is strongly bounded by our computations of the same for each of the individual NRQCD channels; this result provides strong evidence that our description is robust against uncertainties in initial conditions and hadronization mechanisms.

    hep-phhep-exnucl-exnucl-thPRD(2015)·101 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.