PaperPanorama

Nuclear Experiment·nucl-ex

Tue·Feb 18, 2025

6 papers1 primary·5 cross-listed·reconstructed*

  1. 01*

    First measurement of 87Rb({\alpha}, xn) cross sections at weak r-process energies in supernova {\nu}-driven ejecta to investigate elemental abundances in low-metallicity stars

    C. Fougères🇺🇸 · M. L. Avila🇺🇸 · A. Psaltis🇺🇸 · M. Anastasiou🇺🇸 · S. Bae🇰🇷 · L. Balliet🇺🇸 · K. Bhatt🇺🇸 · L. Dienis🇫🇷 · H. Jayatissa🇺🇸 · V. Karayonchev🇺🇸 · P. Mohr🇭🇺 · F. Montes🇺🇸 and 9 other authors

    Observed abundances of Z ~ 40 elements in metal-poor stars vary from star to star, indicating that the rapid and slow neutron capture processes may not contribute alone to the synthesis of elements beyond iron. The weak r-process was proposed to produce Z ~ 40 elements in a subset of old stars. Thought to occur in the {\nu}-driven ejecta of a core-collapse supernova, ({\alpha}, xn) reactions would drive the nuclear flow toward heavier masses at T = 2-5 GK. However, current comparisons between modelled and observed yields do not bring satisfactory insights into the stellar environment, mainly due to the uncertainties of the nuclear physics inputs where the dispersion in a given reaction rate often exceeds one order of magnitude. Involved rates are calculated with the statistical model where the choice of an {\alpha}-optical-model potential ({\alpha}OMP) leads to such a poor precision. The first experiment on 87Rb({\alpha}, xn) reactions at weak r-process energies is reported here. Total inclusive cross sections were assessed at Ec.m. = 8.1 - 13 MeV (3.7 - 7.6 GK) with the active target MUlti-Sampling Ionization Chamber (MUSIC). With a N = 50 seed nucleus, the measured values agree with statistical model estimates using the {\alpha}OMP Atomki-V2. A re-evaluated reaction rate was incorporated into new nucleosynthesis calculations, focusing on {\nu}-driven ejecta conditions known to be sensitive to this specific rate. These conditions were found to fail to reproduce the lighter-heavy element abundances in metal-poor stars.

    nucl-exApJ(2025)·3 citations
  2. 02*

    Commissioning of a radiofrequency quadrupole cooler-buncher for collinear laser spectroscopy

    Yin-Shen Liu🇨🇳 · Han-Rui Hu🇨🇳 · Xiao-Fei Yang🇨🇳 · Wen-Cong Mei🇨🇳 · Yang-Fan Guo🇨🇳 · Zhou Yan🇨🇳 · Shao-Jie Chen🇨🇳 · Shi-wei Bai🇨🇳 · Shu-Jing Wang🇨🇳 · Yong-Chao Liu🇨🇳 · Peng Zhang🇨🇳 · Dong-Yang Chen🇨🇳 and 6 other authors

    A RadioFrequency Quadrupole (RFQ) cooler-buncher system has been developed and implemented in a collinear laser spectroscopy setup. This system is dedicated to convert a continuous ion beam into short bunches, while enhancing beam quality and reducing energy spread. The functionality of the RFQ cooler-buncher has been verified through offline tests with stable rubidium and indium beam, delivered from a surface ion source and a laser ablation ion source, respectively. With a transmission efficiency exceeding 60\%, bunched ion beams with a full width at half maximum of approximately 2~s in the time-of-flight spectrum have been successfully achieved. The implementation of the RFQ cooler-buncher system also significantly improves the overall transmission efficiency of the collinear laser spectroscopy setup.

    physics.ins-detnucl-exphysics.acc-phNucl.Sci.Tech.(2026)·7 citations
  3. 03*

    Performance Characteristics of the Battery-Operated Si PIN Diode Detector with Integrated Preamplifier and Data Acquisition Module for Fusion Particle Detection

    Allan X. Chen · Benjamin F. Sigal · Qiong Wang · John Martinis · Naomi Mitchell · Yuxing Wang · Alfred Y. Wong · Zhifei Li🇨🇳 · Alexander Gunn · Matthew Salazar · Nawar Abdalla · Benjamin Wrixon and 5 other authors

    We present the performance and application of a commercial off-the shelf Si PIN diode (Hamamatsu S14605) as a charged particle detector in a compact ion beam system (IBS) capable of generating D-D and p-B fusion charged particles. This detector is inexpensive, widely available, and operates in photoconductive mode under a reverse bias voltage of 12 V, supplied by an A23 battery. A charge-sensitive preamplifier (CSP) is powered by two 3 V lithium batteries (A123), providing +/-3 V rail voltages. Both the detector and preamplifier circuits are integrated onto the same 4-layer PCB and housed on the vacuum side of the IBS, facing the fusion target. The system employs a CF-2.75 flanged DB-9 connector feedthrough to supply the signal, bias voltage, and rail voltages. To mitigate the high sensitivity of the detector to optical light, a thin aluminum foil assembly is used to block optical emissions from the ion beam and target. Charged particles generate step responses on the preamplifier output, with pulse rise times on the order of 0.2 to 0.3 us. These signals are recorded using a custom-built data acquisition unit, which features an optical fiber data link to ensure electrical isolation of the detector electronics. Subsequent digital signal processing is employed to optimally shape the pulses using a CR-RC^4 filter to produce Gaussian-shaped signals, enabling accurate extraction of energy information. Performance results show that the signal-to-noise ratios (S/N) for D-D fusion charged particles - protons, tritons, and helions - are approximately 30, 10, and 5, respectively, with a shaping time constant of 4 us.

    physics.ins-dethep-exnucl-ex0 citations
  4. 04*

    Heavy-flavor multimodal fragmentation to -wave pentacharms at next-generation hadron colliders

    Francesco Giovanni Celiberto🇪🇸

    We investigate the leading-power fragmentation of fully charmed pentaquark states (-wave pentacharms) at hadron colliders. We introduce a new set of multimodal collinear fragmentation functions, named PQ5Q1.0. They rely on an enhanced calculation of the initial-scale input for the constituent heavy-quark fragmentation channel, making them well suited to describe the short-distance emission of either a compact multicharm state or a dicharm-charm-dicharm configuration. To explore phenomenological implications, we use the (sym)JETHAD multimodular interface to study NLL/NLO semi-inclusive production rates for pentacharm-plus-jet systems at the forthcoming HL-LHC and the future FCC. Our analysis represents a further step toward bridging the domains of hadronic structure, precision QCD, and exotic matter.

    hep-phhep-exhep-thnucl-ex+1EPJC(2025)·15 citations
  5. 05*

    Sullivan process near threshold and the pion gravitational form factors

    Yoshitaka Hatta🇺🇸 · Jakob Schoenleber🇺🇸

    We propose a novel method to experimentally access the gravitational form factors (GFFs) of the charged pion through the Sullivan process in electron-proton scattering. We demonstrate that the cross sections of -photoproduction and -electroproduction near the respective thresholds are dominated by the gluon GFF of the pion to next-to-leading order in perturbative QCD. We predict cross sections for the Electron-Ion Collider and the Jefferson Lab experiments.

    hep-phhep-exnucl-exPRL(2025)·22 citations
  6. 06*

    A Precise Determination of from the Heavy Jet Mass Distribution

    Miguel A. Benitez🇪🇸 · Arindam Bhattacharya🇺🇸 · Andre H. Hoang🇦🇹 · Vicent Mateu🇪🇸 · Matthew D. Schwartz🇺🇸 · Iain W. Stewart🇺🇸 · Xiaoyuan Zhang🇺🇸

    A global fit for is performed on available data for the heavy jet mass distribution. The state-of-the-art theory prediction includes fixed-order results, NLL dijet resummation, NLL Sudakov shoulder resummation, and a first-principles treatment of power corrections in the dijet region. Theoretical correlations are incorporated through a flat random-scan covariance matrix. The global fit results in , compatible with similar determinations from thrust and -parameter. Dijet resummation is essential for a robust fit, as it engenders insensitivity to the fit-range lower cutoff; without resummation the fit-range sensitivity is overwhelming. In addition, we find evidence for a negative power correction in the trijet region if and only if Sudakov shoulder resummation is included.

    hep-phhep-exnucl-exnucl-th29 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.