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  1. Asymptotic giant branch stars are responsible for the production of most of the heavy isotopes beyond Sr observed in the solar system. Among them, isotopes shielded from ther-process contribution by their stable isobars are defined ass-only nuclei. For a long time the abundance ofPb204, the heaviests-only isotope, has been a topic of debate because state-of-the-art stellar models appeared to systematically underestimate its solar abundance. Besides the impact of uncertainties from stellar models and galactic chemical evolution simulations, this discrepancy was further obscured by rather divergent theoretical estimates for the neutron capture cross section of its radioactive precursor in the neutron-capture flow,Tl204(t1/2=3.78yr), and by the lack of experimental data on this reaction. We present the first ever neutron capture measurement onTl204, conducted at the CERN neutron time-of-flight facility n_TOF, employing a sample of only 9 mg ofTl204produced at the Institute Laue Langevin high flux reactor. By complementing our new results with semiempirical calculations we obtained, at thes-process temperatures ofkT8keVandkT30keV, Maxwellian-averaged cross sections (MACS) of 580(168) mb and 260(90) mb, respectively. These figures are about 3% lower and 20% higher than the corresponding values widely used in astrophysical calculations, which were based only on theoretical calculations. By using the newTl204MACS, the uncertainty arising from theTl204(n,γ)cross section on thes-process abundance ofPb204has been reduced from30%down to+8%/6%, and thes-process calculations are in agreement with the latest solar system abundance ofPb204reported by K. Lodders in 2021.

    <supplementary-material><permissions><copyright-statement>Published by the American Physical Society</copyright-statement><copyright-year>2024</copyright-year></permissions></supplementary-material></sec> </div> <a href='#' class='show open-abstract' style='margin-left:10px;'>more »</a> <a href='#' class='hide close-abstract' style='margin-left:10px;'>« less</a> <div class="actions" style="padding-left:10px;"> <span class="reader-count"> Free, publicly-accessible full text available July 1, 2025</span> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10385490-direct-measurement-astrophysical-f19-o16-reaction-deep-underground-laboratory" itemprop="url"> <span class='span-link' itemprop="name">Direct measurement of the astrophysical F19(p,αγ)O16 reaction in a deep-underground laboratory</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1103/PhysRevC.106.055803" target="_blank" title="Link to document DOI">https://doi.org/10.1103/PhysRevC.106.055803  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Zhang, L. Y.</span> <span class="sep">; </span><span class="author" itemprop="author">Su, J.</span> <span class="sep">; </span><span class="author" itemprop="author">He, J. J.</span> <span class="sep">; </span><span class="author" itemprop="author">deBoer, R. J.</span> <span class="sep">; </span><span class="author" itemprop="author">Kahl, D.</span> <span class="sep">; </span><span class="author" itemprop="author">Wiescher, M.</span> <span class="sep">; </span><span class="author" itemprop="author">Odell, D.</span> <span class="sep">; </span><span class="author" itemprop="author">Chen, Y. J.</span> <span class="sep">; </span><span class="author" itemprop="author">Li, X. Y.</span> <span class="sep">; </span><span class="author" itemprop="author">Wang, J. G.</span> <span class="sep">; </span><span class="author">et al</span></span> <span class="year">( <time itemprop="datePublished" datetime="2022-11-01">November 2022</time> , Physical Review C) </span> </div> <div class="actions" style="padding-left:10px;"> <span class="reader-count"> <a class="misc external-link" href="https://doi.org/10.1103/PhysRevC.106.055803" target="_blank" title="Link to document DOI" data-ostiid="10385490"> Full Text Available <span class="fas fa-external-link-alt"></span> </a> </span> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10201444-regional-global-biogenic-isoprene-emission-responses-changes-vegetation-from" itemprop="url"> <span class='span-link' itemprop="name">Regional to Global Biogenic Isoprene Emission Responses to Changes in Vegetation From 2000 to 2015</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1002/2017JD027934" target="_blank" title="Link to document DOI">https://doi.org/10.1002/2017JD027934  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Chen, W. H.</span> <span class="sep">; </span><span class="author" itemprop="author">Guenther, A. B.</span> <span class="sep">; </span><span class="author" itemprop="author">Wang, X. M.</span> <span class="sep">; </span><span class="author" itemprop="author">Chen, Y. H.</span> <span class="sep">; </span><span class="author" itemprop="author">Gu, D. S.</span> <span class="sep">; </span><span class="author" itemprop="author">Chang, M.</span> <span class="sep">; </span><span class="author" itemprop="author">Zhou, S. Z.</span> <span class="sep">; </span><span class="author" itemprop="author">Wu, L. L.</span> <span class="sep">; </span><span class="author" itemprop="author">Zhang, Y. Q.</span> </span> <span class="year">( <time itemprop="datePublished" datetime="2018-04-06">April 2018</time> , Journal of Geophysical Research: Atmospheres) </span> </div> <span class="editors"> <span class="editor" itemprop="editor">null</span> (Ed.) </span> <div class="actions" style="padding-left:10px;"> <span class="reader-count"> <a class="misc external-link" href="https://doi.org/10.1002/2017JD027934" target="_blank" title="Link to document DOI" data-ostiid="10201444"> Full Text Available <span class="fas fa-external-link-alt"></span> </a> </span> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10328298-direct-measurement-astrophysical-f19-o16-reaction-deepest-operational-underground-laboratory" itemprop="url"> <span class='span-link' itemprop="name">Direct Measurement of the Astrophysical F19(p,αγ)O16 Reaction in the Deepest Operational Underground Laboratory</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1103/PhysRevLett.127.152702" target="_blank" title="Link to document DOI">https://doi.org/10.1103/PhysRevLett.127.152702  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Zhang, L. Y.</span> <span class="sep">; </span><span class="author" itemprop="author">Su, J.</span> <span class="sep">; </span><span class="author" itemprop="author">He, J. J.</span> <span class="sep">; </span><span class="author" itemprop="author">Wiescher, M.</span> <span class="sep">; </span><span class="author" itemprop="author">deBoer, R. J.</span> <span class="sep">; </span><span class="author" itemprop="author">Kahl, D.</span> <span class="sep">; </span><span class="author" itemprop="author">Chen, Y. J.</span> <span class="sep">; </span><span class="author" itemprop="author">Li, X. Y.</span> <span class="sep">; </span><span class="author" itemprop="author">Wang, J. G.</span> <span class="sep">; </span><span class="author" itemprop="author">Zhang, L.</span> <span class="sep">; </span><span class="author">et al</span></span> <span class="year">( <time itemprop="datePublished" datetime="2021-10-01">October 2021</time> , Physical Review Letters) </span> </div> <div class="actions" style="padding-left:10px;"> <span class="reader-count"> <a class="misc external-link" href="https://doi.org/10.1103/PhysRevLett.127.152702" target="_blank" title="Link to document DOI" data-ostiid="10328298"> Full Text Available <span class="fas fa-external-link-alt"></span> </a> </span> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10335729-progress-underground-nuclear-astrophysics-experiment-juna-china" itemprop="url"> <span class='span-link' itemprop="name">Progress of Underground Nuclear Astrophysics Experiment JUNA in China</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1007/s00601-022-01735-3" target="_blank" title="Link to document DOI">https://doi.org/10.1007/s00601-022-01735-3  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Liu, W. P.</span> <span class="sep">; </span><span class="author" itemprop="author">Li, Z. H.</span> <span class="sep">; </span><span class="author" itemprop="author">He, J. J.</span> <span class="sep">; </span><span class="author" itemprop="author">Tang, X. D.</span> <span class="sep">; </span><span class="author" itemprop="author">Lian, G.</span> <span class="sep">; </span><span class="author" itemprop="author">Su, J.</span> <span class="sep">; </span><span class="author" itemprop="author">Shen, Y. P.</span> <span class="sep">; </span><span class="author" itemprop="author">An, Z.</span> <span class="sep">; </span><span class="author" itemprop="author">Chao, F. Q.</span> <span class="sep">; </span><span class="author" itemprop="author">Chang, J. J.</span> <span class="sep">; </span><span class="author">et al</span></span> <span class="year">( <time itemprop="datePublished" datetime="2022-06-01">June 2022</time> , Few-Body Systems) </span> </div> <div class="actions" style="padding-left:10px;"> <span class="reader-count"> <a class="misc external-link" href="https://doi.org/10.1007/s00601-022-01735-3" target="_blank" title="Link to document DOI" data-ostiid="10335729"> Full Text Available <span class="fas fa-external-link-alt"></span> </a> </span> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10382673-deep-underground-laboratory-measurement-c13-o16-gamow-windows-processes" itemprop="url"> <span class='span-link' itemprop="name">Deep Underground Laboratory Measurement of C13(α,n)O16 in the Gamow Windows of the s and i Processes</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1103/PhysRevLett.129.132701" target="_blank" title="Link to document DOI">https://doi.org/10.1103/PhysRevLett.129.132701  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Gao, B.</span> <span class="sep">; </span><span class="author" itemprop="author">Jiao, T. Y.</span> <span class="sep">; </span><span class="author" itemprop="author">Li, Y. T.</span> <span class="sep">; </span><span class="author" itemprop="author">Chen, H.</span> <span class="sep">; </span><span class="author" itemprop="author">Lin, W. P.</span> <span class="sep">; </span><span class="author" itemprop="author">An, Z.</span> <span class="sep">; </span><span class="author" itemprop="author">Ru, L. H.</span> <span class="sep">; </span><span class="author" itemprop="author">Zhang, Z. C.</span> <span class="sep">; </span><span class="author" itemprop="author">Tang, X. D.</span> <span class="sep">; </span><span class="author" itemprop="author">Wang, X. Y.</span> <span class="sep">; </span><span class="author">et al</span></span> <span class="year">( <time itemprop="datePublished" datetime="2022-09-23">September 2022</time> , Physical Review Letters) </span> </div> <div class="actions" style="padding-left:10px;"> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10539261-search-high-mass-resonances-final-states-lepton-missing-transverse-momentum-atlas-detector" itemprop="url"> <span class='span-link' itemprop="name">Search for high-mass resonances in final states with a τ -lepton and missing transverse momentum with the ATLAS detector</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1103/PhysRevD.109.112008" target="_blank" title="Link to document DOI">https://doi.org/10.1103/PhysRevD.109.112008  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Aad, G</span> <span class="sep">; </span><span class="author" itemprop="author">Abbott, B</span> <span class="sep">; </span><span class="author" itemprop="author">Abbott, D C</span> <span class="sep">; </span><span class="author" itemprop="author">Abed_Abud, A</span> <span class="sep">; </span><span class="author" itemprop="author">Abeling, K</span> <span class="sep">; </span><span class="author" itemprop="author">Abhayasinghe, D K</span> <span class="sep">; </span><span class="author" itemprop="author">Abidi, S H</span> <span class="sep">; </span><span class="author" itemprop="author">Abramowicz, H</span> <span class="sep">; </span><span class="author" itemprop="author">Abreu, H</span> <span class="sep">; </span><span class="author" itemprop="author">Abulaiti, Y</span> <span class="sep">; </span><span class="author">et al</span></span> <span class="year">( <time itemprop="datePublished" datetime="2024-06-01">June 2024</time> , Physical Review D) </span> </div> <div style="cursor: pointer;-webkit-line-clamp: 5;" class="abstract" itemprop="description"> <p>A search for high-mass resonances decaying into a<math display='inline'><mi>τ</mi></math>-lepton and a neutrino using proton-proton collisions at a center-of-mass energy of<math display='inline'><msqrt><mi>s</mi></msqrt><mo>=</mo><mn>13</mn><mtext> </mtext><mtext> </mtext><mi>TeV</mi></math>is presented. The full run 2 data sample corresponding to an integrated luminosity of<math display='inline'><mn>139</mn><mtext> </mtext><mtext> </mtext><msup><mi>fb</mi><mrow><mo>−</mo><mn>1</mn></mrow></msup></math>recorded by the ATLAS experiment in the years 2015–2018 is analyzed. The<math display='inline'><mi>τ</mi></math>-lepton is reconstructed in its hadronic decay modes and the total transverse momentum carried out by neutrinos is inferred from the reconstructed missing transverse momentum. The search for new physics is performed on the transverse mass between the<math display='inline'><mi>τ</mi></math>-lepton and the missing transverse momentum. No excess of events above the Standard Model expectation is observed and upper exclusion limits are set on the<math display='inline'><msup><mi>W</mi><mo>′</mo></msup><mo stretchy='false'>→</mo><mi>τ</mi><mi>ν</mi></math>production cross section. Heavy<math display='inline'><msup><mi>W</mi><mo>′</mo></msup></math>vector bosons with masses up to 5.0 TeV are excluded at 95% confidence level, assuming that they have the same couplings as the Standard Model<math display='inline'><mi>W</mi></math>boson. For nonuniversal couplings,<math display='inline'><msup><mi>W</mi><mo>′</mo></msup></math>bosons are excluded for masses less than 3.5–5.0 TeV, depending on the model parameters. In addition, model-independent limits on the visible cross section times branching ratio are determined as a function of the lower threshold on the transverse mass of the<math display='inline'><mi>τ</mi></math>-lepton and missing transverse momentum.</p> <sec><title/><supplementary-material><permissions><copyright-statement>© 2024 CERN, for the ATLAS Collaboration</copyright-statement><copyright-year>2024</copyright-year><copyright-holder>CERN</copyright-holder></permissions></supplementary-material></sec> </div> <a href='#' class='show open-abstract' style='margin-left:10px;'>more »</a> <a href='#' class='hide close-abstract' style='margin-left:10px;'>« less</a> <div class="actions" style="padding-left:10px;"> <span class="reader-count"> Free, publicly-accessible full text available June 1, 2025</span> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10001637-optical-nonlinearity-ar-n2-near-ionization-threshold" itemprop="url"> <span class='span-link' itemprop="name">Optical Nonlinearity in Ar and N2 near the Ionization Threshold</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1103/PhysRevLett.107.103901" target="_blank" title="Link to document DOI">https://doi.org/10.1103/PhysRevLett.107.103901  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Wahlstrand, J. K.</span> <span class="sep">; </span><span class="author" itemprop="author">Cheng, Y.-H.</span> <span class="sep">; </span><span class="author" itemprop="author">Chen, Y.-H.</span> <span class="sep">; </span><span class="author" itemprop="author">Milchberg, H. M.</span> </span> <span class="year">( <time itemprop="datePublished" datetime="2011-08-01">August 2011</time> , Physical Review Letters) </span> </div> <div class="actions" style="padding-left:10px;"> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10444870-search-resonant-non-resonant-higgs-boson-pair-production-overline-tau-tau-decay-channel-using-tev-pp-collision-data-from-atlas-detector" itemprop="url"> <span class='span-link' itemprop="name">Search for resonant and non-resonant Higgs boson pair production in the $$ b\overline{b}{\tau}^{+}{\tau}^{-} $$ decay channel using 13 TeV pp collision data from the ATLAS detector</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1007/JHEP07(2023)040" target="_blank" title="Link to document DOI">https://doi.org/10.1007/JHEP07(2023)040  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Aad, G.</span> <span class="sep">; </span><span class="author" itemprop="author">Abbott, B.</span> <span class="sep">; </span><span class="author" itemprop="author">Abbott, D. C.</span> <span class="sep">; </span><span class="author" itemprop="author">Abed Abud, A.</span> <span class="sep">; </span><span class="author" itemprop="author">Abeling, K.</span> <span class="sep">; </span><span class="author" itemprop="author">Abhayasinghe, D. K.</span> <span class="sep">; </span><span class="author" itemprop="author">Abidi, S. H.</span> <span class="sep">; </span><span class="author" itemprop="author">Aboulhorma, A.</span> <span class="sep">; </span><span class="author" itemprop="author">Abramowicz, H.</span> <span class="sep">; </span><span class="author" itemprop="author">Abreu, H.</span> <span class="sep">; </span><span class="author">et al</span></span> <span class="year">( <time itemprop="datePublished" datetime="2023-07-01">July 2023</time> , Journal of High Energy Physics) </span> </div> <div style="cursor: pointer;-webkit-line-clamp: 5;" class="abstract" itemprop="description"> A bstract A search for Higgs boson pair production in events with two b -jets and two τ -leptons is presented, using a proton–proton collision dataset with an integrated luminosity of 139 fb − 1 collected at $$ \sqrt{s} $$ s = 13 TeV by the ATLAS experiment at the LHC. Higgs boson pairs produced non-resonantly or in the decay of a narrow scalar resonance in the mass range from 251 to 1600 GeV are targeted. Events in which at least one τ -lepton decays hadronically are considered, and multivariate discriminants are used to reject the backgrounds. No significant excess of events above the expected background is observed in the non-resonant search. The largest excess in the resonant search is observed at a resonance mass of 1 TeV, with a local (global) significance of 3 . 1 σ (2 . 0 σ ). Observed (expected) 95% confidence-level upper limits are set on the non-resonant Higgs boson pair-production cross-section at 4.7 (3.9) times the Standard Model prediction, assuming Standard Model kinematics, and on the resonant Higgs boson pair-production cross-section at between 21 and 900 fb (12 and 840 fb), depending on the mass of the narrow scalar resonance. </div> <a href='#' class='show open-abstract' style='margin-left:10px;'>more »</a> <a href='#' class='hide close-abstract' style='margin-left:10px;'>« less</a> <div class="actions" style="padding-left:10px;"> <span class="reader-count"> <a class="misc external-link" href="https://doi.org/10.1007/JHEP07(2023)040" target="_blank" title="Link to document DOI" data-ostiid="10444870"> Full Text Available <span class="fas fa-external-link-alt"></span> </a> </span> </div> </div><div class="clearfix"></div> </div> </li> <li> <div class="article item document" itemscope itemtype="http://schema.org/TechArticle"> <div class="item-info"> <div class="title"> <a href="https://par.nsf.gov/biblio/10438096-combination-inclusive-top-quark-pair-production-cross-section-measurements-using-atlas-cms-data-sqrt-tev" itemprop="url"> <span class='span-link' itemprop="name">Combination of inclusive top-quark pair production cross-section measurements using ATLAS and CMS data at $$ \sqrt{s} $$ = 7 and 8 TeV</span> </a> </div> <div> <strong> <a class="misc external-link" href="https://doi.org/10.1007/JHEP07(2023)213" target="_blank" title="Link to document DOI">https://doi.org/10.1007/JHEP07(2023)213  <span class="fas fa-external-link-alt"></span></a> </strong> </div> <div class="metadata"> <span class="authors"> <span class="author" itemprop="author">Aad, G.</span> <span class="sep">; </span><span class="author" itemprop="author">Abbott, B.</span> <span class="sep">; </span><span class="author" itemprop="author">Abbott, D. C.</span> <span class="sep">; </span><span class="author" itemprop="author">Abed Abud, A.</span> <span class="sep">; </span><span class="author" itemprop="author">Abeling, K.</span> <span class="sep">; </span><span class="author" itemprop="author">Abhayasinghe, D. K.</span> <span class="sep">; </span><span class="author" itemprop="author">Abidi, S. H.</span> <span class="sep">; </span><span class="author" itemprop="author">Aboulhorma, A.</span> <span class="sep">; </span><span class="author" itemprop="author">Abramowicz, H.</span> <span class="sep">; </span><span class="author" itemprop="author">Abreu, H.</span> <span class="sep">; </span><span class="author">et al</span></span> <span class="year">( <time itemprop="datePublished" datetime="2023-07-01">July 2023</time> , Journal of High Energy Physics) </span> </div> <div style="cursor: pointer;-webkit-line-clamp: 5;" class="abstract" itemprop="description"> A bstract A combination of measurements of the inclusive top-quark pair production cross-section performed by ATLAS and CMS in proton–proton collisions at centre-of-mass energies of 7 and 8 TeV at the LHC is presented. The cross-sections are obtained using top-quark pair decays with an opposite-charge electron–muon pair in the final state and with data corresponding to an integrated luminosity of about 5 fb − 1 at $$ \sqrt{s} $$ s = 7 TeV and about 20 fb − 1 at $$ \sqrt{s} $$ s = 8 TeV for each experiment. The combined cross-sections are determined to be 178 . 5 ± 4 . 7 pb at $$ \sqrt{s} $$ s = 7 TeV and $$ {243.3}_{-5.9}^{+6.0} $$ 243.3 − 5.9 + 6.0 pb at $$ \sqrt{s} $$ s = 8 TeV with a correlation of 0.41, using a reference top-quark mass value of 172.5 GeV. The ratio of the combined cross-sections is determined to be R 8 / 7 = 1 . 363 ± 0 . 032. The combined measured cross-sections and their ratio agree well with theory calculations using several parton distribution function (PDF) sets. The values of the top-quark pole mass (with the strong coupling fixed at 0.118) and the strong coupling (with the top-quark pole mass fixed at 172.5 GeV) are extracted from the combined results by fitting a next-to-next-to-leading-order plus next-to-next-to-leading-log QCD prediction to the measurements. Using a version of the NNPDF3.1 PDF set containing no top-quark measurements, the results obtained are $$ {m}_t^{\textrm{pole}}={173.4}_{-2.0}^{+1.8} $$ m t pole = 173.4 − 2.0 + 1.8 GeV and $$ {\alpha}_{\textrm{s}}\left({m}_Z\right)={0.1170}_{-0.0018}^{+0.0021} $$ α s m Z = 0.1170 − 0.0018 + 0.0021 . </div> <a href='#' class='show open-abstract' style='margin-left:10px;'>more »</a> <a href='#' class='hide close-abstract' style='margin-left:10px;'>« less</a> <div class="actions" style="padding-left:10px;"> <span class="reader-count"> <a class="misc external-link" href="https://doi.org/10.1007/JHEP07(2023)213" target="_blank" title="Link to document DOI" data-ostiid="10438096"> Full Text Available <span class="fas fa-external-link-alt"></span> </a> </span> </div> </div><div class="clearfix"></div> </div> </li> </ol> <div id="pagination-lower" style=""> <div class="pull-right" style="line-height: 30px;"> <div class="btn-group pagination nomargin"> <a href="#" class="btn btn-sm btn-default noborderradius" disabled="disabled">«<span class="hidden-xs"> Prev</span></a> <a class="dropdown-toggle btn btn-sm btn-default paging-dropdown hidden-xs noborderradius" href="#" data-toggle="dropdown"><span class="caret"></span><span class="sr-only">Select page number</span></a> <div class="dropdown-menu pull-right paging-slider-dropdown" style="padding: 15px;"> <small> <div class="text-muted" style="line-height:20px;"><label for="pagination-sel-sptag-2">Go to page: <span class="paging-target">1</span> of <span class="paging-max">19</span></label></div> <div> <table> <tr> <td valign="top"> <input id="pagination-sel-sptag-2" data-range="" value="1" min="1" max="19" name="pagination-sel" type="range" class="pagination-sel noborderradius" style="height:26px;padding:0px;margin-right:5px; 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