PaperPanorama

Nuclear Experiment·nucl-ex

Tue·Sep 15, 2020

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

  1. 01*

    CNN-based event classification for alpha-decay events in nuclear emulsion

    J. Yoshida🇯🇵 · H. Ekawa🇯🇵 · A. Kasagi🇯🇵 · M. Nakagawa🇯🇵 · K. Nakazawa · N.Saito · T.R. Saito🇯🇵 · M. Taki🇯🇵 · M. Yoshimoto🇯🇵

    We developed an efficient classifier that sorts alpha-decay events from various vertex-like objects in nuclear emulsion using a convolutional neural network (CNN). Alpha-decay events in the emulsion are standard calibration sources for the relation between the track length and kinetic energy in each emulsion sheet. We trained the CNN using 15,885 images of vertex-like objects including 906 alpha-decay events and tested it using a dataset of 46,948 images including 255 alpha-decay events. By tuning the hyperparameters of the CNN, the trained models achieved an Average Precision Score of 0.740 +/- 0.009 for the test dataset. For the model obtained, a discrimination threshold of the classification can be arbitrarily adjusted according to the balance between the precision and recall. The precision and recall of the classification using previous method without a CNN were 0.081 +/- 0.006 and 0.788 +/- 0.056, respectively, for the same dataset. By contrast, the developed classifier obtained a precision of 0.547 +/- 0.025 when a similar recall value of 0.788 was set. The developed CNN method reduced the human load for further visual inspection after the classification by approximately 1/7 compared to the estimated load of the former method without a CNN.

    nucl-exNucl.Instrum.Meth.A(2021)·7 citations
  2. 02*

    Final Results of GERDA on the Search for Neutrinoless Double- Decay

    GERDA collaboration: M. Agostini🇬🇧 · G. R. Araujo🇨🇭 · A. M. Bakalyarov🇷🇺 · M. Balata🇮🇹 · I. Barabanov🇷🇺 · L. Baudis🇨🇭 · C. Bauer🇩🇪 · E. Bellotti🇮🇹 · S. Belogurov🇷🇺 · A. Bettini🇮🇹 · L. Bezrukov🇷🇺 · V. Biancacci🇮🇹 and 102 other authors

    The GERmanium Detector Array (GERDA) experiment searched for the lepton-number-violating neutrinoless double- () decay of Ge, whose discovery would have far-reaching implications in cosmology and particle physics. By operating bare germanium diodes, enriched in Ge, in an active liquid argon shield, GERDA achieved an unprecedently low background index of counts/(keVkgyr) in the signal region and met the design goal to collect an exposure of 100 kgyr in a background-free regime. When combined with the result of Phase I, no signal is observed after 127.2 kgyr of total exposure. A limit on the half-life of decay in Ge is set at yr at 90% C.L., which coincides with the sensitivity assuming no signal.

    nucl-exhep-exphysics.ins-detPRL(2020)·666 citations
  3. 03*

    Observation of the Cusp in the New Precise Beam Asymmetry Data for

    CBELSA/TAPS Collaboration

    Data on the beam asymmetry in the photoproduction of mesons off protons are reported for tagged photon energies from 1130 to 1790 MeV (mass range from 1748 MeV to 2045 MeV). The data cover the full solid angle that allows for a precise moment analysis. For the first time, a strong cusp effect in a polarization observable has been observed that is an effect of a branch-point singularity at the threshold [ 1447 MeV ( 1896 MeV)]. The latest BnGa partial wave analysis includes the new beam asymmetry data and yields a strong indication for the nucleon resonance, demonstrating the importance of including all singularities for a correct determination of partial waves and resonance parameters.

    nucl-exPRL(2020)·23 citations
  4. 04*

    Nuclear resonance fluorescence of Pb in heavy-ion colliders

    Uliana Dmitrieva (1 and 2)🇷🇺 · Igor Pshenichnov (1 and 2) ((1) Moscow Institute of Physics and Technology, Dolgoprudny, Russia, (2) Institute for Nuclear Research, Russian Academy of Sciences, Moscow, Russia)🇷🇺

    In ultraperipheral collisions (UPC) of nuclei the impact of Lorentz-contracted electromagnetic fields of collision partners leads to their excitations. In case of heavy nuclei the emission of neutrons is a main deexcitation channel and forward neutrons emitted in UPC were detected at the Relativistic Heavy-Ion Collider (RHIC) and at the Large Hadron Collider (LHC) by means of Zero Degree Calorimeters. However, the excitation of low-lying discrete nuclear states is also possible in UPC below the neutron separation energy. In this work by means of the Weizsacker-Williams method the data on nuclear resonance fluorescence (NRF) induced by real photons in 208 Pb are used to model the excitations of discrete levels in colliding nuclei. Due to Lorentz boosts one can expect that deexcitation photons with energies up to 40 GeV and 300 GeV are emitted in very forward direction, respectively, at the LHC and at the Future Circular Collider (FCC-hh). Energy, rapidity and angular distributions of such photons are calculated in the laboratory system, which can be used for monitoring of collider luminosity or triggering particle production in UPC.

    ↳ nucl-thnucl-exEPJA(2021)·4 citations
  5. 05*

    Lattice calculation of transport coefficient in pure gluon plasma and (2+1)-flavor QCD plasma

    Amit Kumar (Wayne State University USA)🇺🇸 · Abhijit Majumder (Wayne State University USA)🇺🇸 · Johannes Heinrich Weber (Michigan State University USA)🇺🇸

    The transport coefficient is a leading coefficient that controls the modification of the hard parton traversing QGP, and hence, responsible for the suppression of the high transverse momentum (transverse to the beam direction) charged-hadrons in heavy-ion collisions. In this article, we present the first unquenched lattice QCD calculation of . The calculation is carried out using (2+1)-flavor of quarks, using the highly improved staggered quark action (HISQ) and tree-level Symanzik improved gauge action. The calculation is performed in a wide range of temperatures, ranging from 200 MeV 800 MeV using MILC code package. We considered a leading-order process where a hard parton scatters off the glue field of a thermal QCD medium by exchanging a Glauber gluon (whose transverse momentum is larger than its longitudinal components). The hard scale associated with the jet parton allows the coupling of the gluon to that parton to be treated in perturbation theory. The coupling of the gluon to the medium is treated non-perturbatively. This non-perturbative part is expressed in terms of a non-local (two-point) field-strength-field-strength operator product which can be Taylor expanded after analytic continuation to the deep Euclidean region. Such an expansion allows us to write in terms of a series of local operators, which are suppressed by factors of the hard parton energy. The calculated and its temperature dependence demonstrates reasonable agreement with the phenomenological extraction carried out by the JET collaboration.

    ↳ nucl-thhep-latnucl-exPoS(2021)·2 citations
  6. 06*

    The luminosity constraint in the era of precision solar physics

    Diego Vescovi🇮🇹 · Carlo Mascaretti🇮🇹 · Francesco Vissani🇮🇹 · Luciano Piersanti🇮🇹 · Oscar Straniero🇮🇹

    The luminosity constraint is a very precise relationship linking the power released by the Sun as photons and the solar neutrino fluxes. Such a relation, which is a direct consequence of the physical processes controlling the production and the transport of energy in the solar interior, is of great importance for the studies of solar neutrinos and has a special role for the search of neutrinos from the CNO cycle, whose first detection with a 5 significance has been recently announced by the Borexino collaboration. Here we revise the luminosity constraint, discussing and validating its underlying hypotheses, in the light of latest solar neutrino and luminosity measurements. We generalize the current formulation of the luminosity constraint relation so that it can be easily used in future analysis of solar neutrino data, and we provide a specific application showing the link between CNO and pp neutrino fluxes.

    ↳ astro-ph.SRhep-phnucl-exnucl-thJ.Phys.G(2020)·11 citations
  7. 07*

    Cumulants of net-charge distribution from particle-antiparticle sources

    Igor Altsybeev🇷🇺

    It is shown how high-order cumulants of net-charge distribution in hadronic collisions at LHC energies can be expressed via lower-order terms under the assumption that particle-antiparticle pairs are produced in independent local processes. It is argued and tested with HIJING model that this assumption is typically valid for net-proton fluctuations in the case when no critical behaviour is present in the system. Values estimated in such a way can be considered as baselines for direct measurements of high-order net-charge fluctuations in real data.

    ↳ nucl-thhep-phnucl-exActa Phys.Polon.Supp.(2021)·1 citation
  8. 08*

    Thermal neutron radiography of a passive proton exchange membrane fuel cell for portable hydrogen energy systems

    Antonio M.Chaparro · P. Ferreira-Aparicio · M. Antonia Folgado · Rico Hübscher · Carsten Lange🇨🇭 · Norbert Weber

    A proton exchange membrane fuel cell (PEMFC) for low power and portable applications is studied with thermal neutron radiography. The PEMFC operates under full passive conditions, with an air-breathing cathode and a dead-end anode supplied with static ambient air and dry hydrogen, respectively. A columnar cathodic plate favors the mobility of water drops over the cathode surface and their elimination. Thermal neutron images show liquid water build up during operation with the cell in vertical and horizontal positions, i.e. with its main plane aligned parallel and perpendicular to the gravity field, respectively. Polarization curves and impedance spectroscopy show cell orientation dependent response that can be related with the water accumulation profiles. In vertical position, lower water contents in the cathode electrode is favored by the elimination of water drops rolling over the cathode surface and the onset of natural convection. As a consequence, oxygen transport is improved in the vertical cell, that can be operated full passive for hours under ambient conditions, providing steady peak power densities above 100 mW/cm2. Gravity and natural convection are less effective in horizontal position, leading to a 17% decrease in peak power density due to oxygen transport losses. The horizontal position is especially adverse if the upper electrode is the cathode, because of anode flooding causing cell failure after production of a small amount of water (5 mg/cm2). The combined information from thermal neutron radiography and cell response characteristics explains the important influence of cell orientation on the performance of a fully passive air-breathing PEMFC for portable applications.

    ↳ physics.app-phnucl-exJ.Power Sources(2020)·0 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.