3,827 research outputs found

    Measurement of the mass difference and the binding energy of the hypertriton and antihypertriton

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    According to the CPT theorem, which states that the combined operation of charge conjugation, parity transformation and time reversal must be conserved, particles and their antiparticles should have the same mass and lifetime but opposite charge and magnetic moment. Here, we test CPT symmetry in a nucleus containing a strange quark, more specifically in the hypertriton. This hypernucleus is the lightest one yet discovered and consists of a proton, a neutron, and a Λ\Lambda hyperon. With data recorded by the STAR detector{\cite{TPC,HFT,TOF}} at the Relativistic Heavy Ion Collider, we measure the Λ\Lambda hyperon binding energy BΛB_{\Lambda} for the hypertriton, and find that it differs from the widely used value{\cite{B_1973}} and from predictions{\cite{2019_weak, 1995_weak, 2002_weak, 2014_weak}}, where the hypertriton is treated as a weakly bound system. Our results place stringent constraints on the hyperon-nucleon interaction{\cite{Hammer2002, STAR-antiH3L}}, and have implications for understanding neutron star interiors, where strange matter may be present{\cite{Chatterjee2016}}. A precise comparison of the masses of the hypertriton and the antihypertriton allows us to test CPT symmetry in a nucleus with strangeness for the first time, and we observe no deviation from the expected exact symmetry

    First measurement of Λc\Lambda_c baryon production in Au+Au collisions at sNN\sqrt{s_{\rm NN}} = 200 GeV

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    We report on the first measurement of the charmed baryon Λc±\Lambda_c^{\pm} production at midrapidity (y|y| << 1) in Au+Au collisions at sNN\sqrt{s_{NN}} = 200 GeV collected by the STAR experiment at the Relativistic Heavy Ion Collider. The Λc\Lambda_c/D0D^0 (denoting (Λc++Λc\Lambda_c^++\Lambda_c^-)/(D0+D0ˉD^0+\bar{D^0})) yield ratio is measured to be 1.08 ±\pm 0.16 (stat.) ±\pm 0.26 (sys.) in the 0--20% most central Au+Au collisions for the transverse momentum (pTp_T) range 3 << pTp_T << 6 GeV/cc. This is significantly larger than the PYTHIA model calculations for p+pp+p collisions. The measured Λc\Lambda_c/D0D^0 ratio, as a function of pTp_T and collision centrality, is comparable to the baryon-to-meson ratios for light and strange hadrons in Au+Au collisions. Model calculations including coalescence hadronization for charmed baryon and meson formation reproduce the features of our measured Λc\Lambda_c/D0D^0 ratio.Comment: 5 pages, 3 figure

    Search for new physics with dijet angular distributions in proton-proton collisions at root S = 13 TeV

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    Search for top squark pair production in pp collisions at root s=13 TeV using single lepton events

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