30,152 research outputs found

    A Numerical Analysis to the {Ï€\pi} and {K} Coupled--Channel Scalar Form-factor

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    A numerical analysis to the scalar form-factor in the ππ\pi\pi and KK coupled--channel system is made by solving the coupled-channel dispersive integral equations, using the iteration method. The solutions are found not unique. Physical application to the ππ\pi\pi central production in the pp→ppππpp\to pp\pi\pi process is discussed based upon the numerical solutions we found.Comment: 8 pages, Latex, 3 figures. Minor changes and one reference adde

    η\eta meson production of high-energy nuclear collisions at NLO

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    The transverse momentum spectrum of η\eta meson in relativistic heavy-ion collisions is studied at the next-to-leading-order (NLO) within the perturbative QCD, where the jet quenching effect in the QGP is incorporated with the effectively medium-modified η\eta fragmentation functions using the higher-twist approach. We show that the theoretical simulations could give nice descriptions of PHENIX data on η\eta meson in both p+p\rm p+p and central Au+Au\rm Au+Au collisions at the RHIC, and also provide numerical predictions of η\eta spectra in central Pb+Pb\rm Pb+Pb collisions with sNN=2.76\sqrt{s_{NN}}=2.76~TeV at the LHC. The ratios of η/π0\eta/\pi^0 in p+p\rm p+p and in central Au+Au\rm Au+Au collisions at 200200~GeV are found to overlap in a wide pTp_T region, which matches well the measured ratio η/π0\eta / \pi^0 by PHENIX. We demonstrate that, at the asymptotic region when pT→∞p_{T} \rightarrow \infty the ratios of η/π0\eta/\pi^{0} in both Au+Au\rm Au+Au and p+p\rm p+p are almost determined only by quark jets fragmentation and thus approach to the one in e+e−e^{+} e^{-} scattering; in addition, the almost identical gluon (quark) contribution fractions to η\eta and to π\pi result in a rather moderate variation of η/π0\eta/\pi^{0} distribution at intermediate and high pTp_T region in A+A\rm A+A relative to that in p+p\rm p+p; while a slightly higher η/π0\eta/\pi^{0} at small pTp_T in Au+Au\rm Au+Au can be observed due to larger suppression of gluon contribution fraction to π0\pi^{0} as compared to the one to η\eta. The theoretical prediction for η/π0\eta / \pi^0 at the LHC has also been presented.Comment: 7 pages, 8 figures, 2 typos corrected, revision for publicatio

    Exotic QQqˉqˉQQ\bar{q}\bar{q}, QQqˉsˉQQ\bar{q}\bar{s} and QQsˉsˉQQ\bar{s}\bar{s} states

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    After constructing the possible JP=0−,0+,1−J^P=0^-, 0^+, 1^- and 1+1^+ QQqˉqˉQQ\bar{q}\bar{q} tetraquark interpolating currents in a systematic way, we investigate the two-point correlation functions and extract the corresponding masses with the QCD sum rule approach. We study the QQqˉqˉQQ\bar{q}\bar{q}, QQqˉsˉQQ\bar{q}\bar{s} and QQsˉsˉQQ\bar{s}\bar{s} systems with various isospins I=0,1/2,1I=0, 1/2, 1. Our numerical analysis indicates that the masses of doubly-bottomed tetraquark states are below the threshold of the two bottom mesons, two bottom baryons and one doubly bottomed baryon plus one anti-nucleon. Very probably these doubly-bottomed tetraquark states are stable.Comment: 37 pages, 2 figure

    High Chern number quantum anomalous Hall phases in graphene ribbons with Haldane orbital coupling

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    We investigate possible phase transitions among the different quantum anomalous Hall (QAH) phases in a zigzag graphene ribbon under the influence of the exchange field. The effective tight-binding Hamiltonian for graphene is made up of the hopping term, the Kane-Mele and Rashba spin-orbit couplings as well as the Haldane orbital term. We find that the variation of the exchange field results in bulk gap-closing phenomena and phase transitions occur in the graphene system. If the Haldane orbital coupling is absent, the phase transition between the chiral (anti-chiral) edge state ν=+2\nu=+2 (ν=−2\nu=-2) and the pseudo-quantum spin Hall state (ν=0\nu=0) takes place. Surprisingly, when the Haldane orbital coupling is taken into account, an intermediate QSH phase with two additional edge modes appears in between phases ν=+2\nu=+2 and ν=−2\nu=-2. This intermediate phase is therefore either the hyper-chiral edge state of high Chern number ν=+4\nu=+4 or anti-hyper-chiral edge state of ν=−4\nu=-4 when the direction of exchange field is reversed. We present the band structures, edge state wave functions and current distributions of the different QAH phases in the system. We also report the critical exchange field values for the QAH phase transitions.Comment: 4 figure
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