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We report results of magnetization and 19F NMR measurements in the normal state of as-grown vacuum-annealed LaO0.5β’F0.5β‘BiS2. The magnetization is dominated by a temperature-independent diamagnetic component and a field- and temperature-dependent paramagnetic contribution ππβ‘(π»,π) from a βΌ1000 ppm concentration of local moments, an order of magnitude higher than can be accounted for by measured rare-earth impurity concentrations. ππβ‘(π»,π) can be fit by the Brillouin function π΅π½β‘(π₯) or, perhaps more realistically, a two-level tanhβ‘(π₯) model for magnetic Bi 6β’π ions in defect crystal fields. Both fits require a phenomenological Curie-Weiss argument π₯=πeffβ’π»β‘/(π+ππ), ππβ1.7 K. There is no evidence for magnetic order down to 2 K, and the origin of ππ is not clear. 19F frequency shifts, linewidths, and spin-lattice relaxation rates are consistent with purely dipolar 19F/defect-spin interactions. The defect-spin correlation time ππβ‘(π) obtained from 19F spin-lattice relaxation rates obeys the Korringa relation ππβ’π=const, indicating the relaxation is dominated by conduction-band fluctuations.more » « less
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Abstract This paper describes the cryogenic and purification systems of the ICARUS T600 detector in its present implementation at the Fermi National Laboratory, Illinois, U.S.A. The ICARUS T600 detector is made of four large Time Projection Chambers, installed in two separate containers of about 275 m3each. The detector uses liquid argon both as target and as active medium. For the correct operation of the detector, the liquid argon must be kept in very stable thermal conditions and the contamination of electronegative impurities must be consistently kept at the level of small fractions of parts per billion. The detector was previously operated in Italy, at the INFN Gran Sasso Underground Laboratory (LNGS), in a three-year run on the CERN to LNGS Long Baseline Neutrino Beam. For its operation on the Booster and NuMI neutrino beams at Fermilab, for the search of sterile neutrinos and measurements of neutrino-argon cross sections, the detector was moved from Gran Sasso to CERN for the upgrades required for operation at shallow depth with high intensity neutrino beams. The liquid argon containers, the thermal insulation and all the cryogenic equipment have been completely re-designed and rebuilt, following the schemes of the previous installation in Gran Sasso. The detector and all the equipment have been transported to Fermilab, where they have been installed, tested and recently put into operation. The work described in this paper has been conducted as a joint responsibility of CERN and Fermilab with the supervision provided by the ICARUS Collaboration. Design, installation, testing, commissioning and operation are the result of a common effort of CERN, Fermilab and INFN groups.more » « lessFree, publicly-accessible full text available April 1, 2027
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The short-baseline near detector (SBND), the near detector in the short-baseline neutrino program at Fermi National Accelerator Laboratory, is located just 110 m from the booster neutrino beam target. Thanks to this close proximity, relative to its front face, neutrinos enter SBND over a range of angles from 0Β° to approximately 1.6Β°, enabling the detector to sample variations in the neutrino flux as a function of the angleβa technique known as precision reaction-independent spectrum measurement (PRISM), referred to here as SBND-PRISM. In this paper, we show how muon- and electron-neutrino fluxes vary as a function of the neutrino beam axis angle and how this can be exploited to expand the physics potential of SBND. We make use of a model that predicts an angle-dependent electron-neutrino excess signal to illustrate this effect, such as oscillations. We present how SBND-PRISM provides a method to add robustness against uncertainties in cross-section modeling and, more generally, uncertainties that do not depend on the spatial position of neutrino interaction inside the detector. The fluxes, along with their associated covariance matrices, are made publicly available with this publication.more » « lessFree, publicly-accessible full text available April 1, 2027
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Abstract The ICARUS liquid argon TPC detector is taking data on the Booster (BNB) and Main Injector (NuMI) Neutrino beam lines at Fermilab with a trigger system based on the scintillation light produced by charged particles in coincidence with the proton beam extraction from the accelerators. The architecture and the deployment of the trigger system in the first two runs for physics are presented, as well as the triggered event rates. The event recognition efficiency has been evaluated as a function of the deposited energy and the position of cosmic muons stopping inside the detector.more » « lessFree, publicly-accessible full text available October 1, 2026
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The time-dependent asymmetry in decays is measured using proton-proton collision data corresponding to an integrated luminosity of , collected with the LHCb detector at a center-of-mass energy of 13 TeV during the years 2015β2018. The -violation parameters for this process are determined to be and , where the first uncertainty is statistical and the second systematic. This constitutes the first observation of time-dependent violation in decays. Assuming approximate SU(3) flavor symmetry, these results are combined with the previous consistent LHCb measurement to set the most stringent constraint on the penguin contribution, , to the -violating phase in decays, yielding .more » « lessFree, publicly-accessible full text available July 1, 2027
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Muon-electron universality is tested in decays, in the dilepton-invariant-mass region above the resonance. The analysis uses beauty mesons produced in proton-proton collisions recorded by the LHCb detector at center-of-mass energies of 7, 8, and 13 TeV, corresponding to an integrated luminosity of . The ratio of branching fractions between the muon and electron channels is measured to be for a dilepton-invariant-mass squared above , consistent with the standard model prediction. This result represents the most precise measurement of in this region and the first such measurement performed at a hadron collider.more » « lessFree, publicly-accessible full text available July 1, 2027
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The first observation of the doubly charmed baryon is reported through its decay to the final state, with a statistical significance exceeding seven standard deviations. The observation is made using proton-proton collision data collected in 2024 with the LHCb Run 3 detector at a center-of-mass energy of 13.6 TeV, corresponding to a total integrated luminosity of . The mass is measured to be , where the first uncertainty is statistical, the second is systematic, and the third is due to the unknown lifetime, which is assumed to lie in the range 15β160 fs with a baseline value of 45 fs. The difference between the masses of the and baryons is determined to be . This is the first observation of a new particle made with the LHCb Run 3 detector.more » « lessFree, publicly-accessible full text available July 1, 2027
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A search for the rare decay is performed using proton-proton collision data recorded by the LHCb experiment at a center-of-mass energy of , corresponding to an integrated luminosity of . An excess of events is found with respect to the background-only expectation, with a signal significance of 3.5 standard deviations, in the low invariant-mass region of . The branching fraction is measured to be , where the last uncertainty is due to external inputs on . With no significant signal observed in the high region above , an upper limit is set to be at the 90% (95%) confidence level.more » « lessFree, publicly-accessible full text available July 1, 2027
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An analysis of the decay is presented using proton-proton collision data collected by the LHCb experiment, corresponding to an integrated luminosity of . The full set of -averaged and -asymmetric angular observables is determined in bins of the invariant mass squared of the dimuon system, as well as the branching fraction relative to the decay. For the first time, the full set of observables pertaining to the S-wave contribution to the final state are presented and consideration is given to effects arising from the mass of the muons. The extracted -asymmetry observables show no significant deviations from zero. The measurements of the -averaged observables and the branching fractions continue to exhibit the pattern of tensions with the standard model predictions that have been seen in previous analyses that use part of the dataset considered in this Letter.more » « lessFree, publicly-accessible full text available July 1, 2027
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