13,245 research outputs found

    Quantum chromodynamics with various number of flavors

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    The phase structure of QCD with various number of flavors is studied for Wilson quarks. For the case of NF=3N_F=3 we find that the finite temperature deconfining transition is of first order in the chiral limit on an Nt=4N_t=4 lattice. Together with our previous results that the deconfining transition in the chiral limit is continuous for NF=2N_F=2 and is first order for NF=6N_F=6, the order of the transition is found to be consistent with a prediction of universality. The case of SU(2)SU(2) QCD is also studied in the strong coupling limit and the phase structure is found to be quite similar to the case of SU(3)SU(3): There exists a critical number of flavors NF∗N_F^* and for NF≥NF∗N_F \geq N_F^* the confinement is broken even in the strong coupling limit for light quarks. NF∗=3N_F^*=3 corresponding to 7 for SU(3)SU(3).Comment: 3 pages with 5 PS figures, LaTeX (espcrc2.sty required), UTHEP-26

    Construction of staples in lattice gauge theory on a parallel computer

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    We propose a simple method to construct staples in lattice gauge theory with Wilson action on a parallel computer. This method can be applicable to any dimensional system and to any dimensional division without difficulty. Furthermore this requires rather small working area to realize gauge simulation on a parallel computer.Comment: 4 pages of A4 forma

    Electromagnetic power absorber

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    A structure is presented with a surface portion of dielectric material which passes electromagnetic radiation and with a portion below the surface which includes material that absorbs the radiation, the face of the structure being formed with numerous steep ridges. The steepness of the dielectric material results in a high proportion of the electromagnetic energy passing through the surface for absorption by the absorbing material under the surface. A backing of aluminum or other highly heat-conductive and reflective material lies under the face and has very steep protuberances supporting the absorbing and dielectric materials

    Phase structure of QCD for general number of flavors

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    We investigate and elucidate the phase structure of QCD for general number of flavors NFN_F with Wilson quarks, varying NFN_F from 2 up to 300. Based on numerical results combined with the result of the perturbation theory we propose the following picture: When NF≥17N_F \ge 17, there is only a trivial fixed point and therefore the theory in the continuum limit is trivial. On the other hand, when 16≥NF≥716 \ge N_F \ge 7, there is a non-trivial fixed point and therefore the theory is non-trivial with anomalous dimensions, however, without quark confinement. Theories which satisfy both quark confinement and spontaneous chiral symmetry breaking in the continuum limit exist only for NF≤6N_F \le 6. We also discuss the structure of the deconfining phase at finite temperatures for the small number of flavors such as NF=2N_F=2 and 3, through a systematic study of it for general number of flavors.Comment: LaTeX, 7 pages, 10 PS figures, Talk presented at LATTICE96(poster) and LATTICE96(finite temperature

    Chiral Phase Transition in Lattice QCD with Wilson Quarks

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    The nature of the chiral phase transition in lattice QCD is studied for the cases of 2, 3 and 6 flavors with degenerate Wilson quarks, mainly on a lattice with the temporal direction extension Nt=4N_t=4. We find that the chiral phase transition is continuous for the case of 2 flavors, while it is of first order for 3 and 6 flavors.Comment: uuencoded compressed tar file, LaTeX, 14 pages, 7 figure

    Finite-temperature chiral transitions in QCD with the Wilson quark action

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    We investigate the finite-temperature phase structure and the scaling of the chiral condensate in lattice QCD with two degenerate light quarks, using a renormalization group improved gauge action and the Wilson quark action. We obtain a phase diagram which is consistent with that from the parity-flavor breaking scenario. The scaling relation for the chiral condensate assuming the critical exponents and the scaling function of the three dimensional O(4) model is remarkably satisfied for a wide range of parameters. This indicates that the chiral transition in two flavor QCD is of second order in the continuum limit.Comment: LaTeX, 3 pages, 4 EPS figures, Talk presented at LATTICE97 (finite temperature

    Transport Coefficients of Quark Gluon Plasma for Pure Gauge Models

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    The transport coefficients of quark gluon plasma are calculated on a lattice 16**3X8, with the pure gauge models. Matsubara Green's functions of energy momentum tensors have very large fluctuations and about a few million MC sweeps are needed to reduce the errors reasonably small in the case of the standard action. They are much suppressed if Iwasaki's improved action is employed. Preliminary results show that the transport coefficients roughly depend on the coupling constant as a**(-3)(g) in the case of SU(2).Comment: Talk presented at LATTICE96(finite temperature), 3 pages in latex, 4 Postscript figure

    Anisotropic Improved Gauge Actions; --Perturbative and Numerical Studies --

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    The Λ\Lambda parameter on the anisotropic lattice, the spatial and temperature coupling constant gσg_{\sigma}, gτg_{\tau} and their derivative with respaect to the the anisotropy parameter ξ\xi are studied perturbatively for the class of improved actions, which cover tree level Symanzik's, Iwasaki's and QCDTARO's improved actions. The η(=gτ/gσ)\eta(=g_{\tau}/g_{\sigma}) becomes less than 1 for Iwasaki's and QCDTARO's action, which is confirmed nonperturbatively by numerical simulations. Derivatives of the coupling constants with respect to the anisotropy parameter, ∂gτ/∂ξ\partial g_{\tau}/\partial \xi and ∂gσ/∂ξ\partial g_{\sigma}/\partial \xi, change sign for those improved actions.Comment: LATTICE98(hightemp), 3 pages in latex, 4 Postscript figures Fonts in Fig3 is replaced Aria

    QCD Phase Transition with Strange Quark in Wilson Formalism for Fermions

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    The nature of QCD phase transition is studied with massless up and down quarks and a light strange quark, using the Wilson formalism for quarks on a lattice with the temporal direction extension Nt=4N_t=4. We find that the phase transition is first order in the cases of both about 150 MeV and 400 MeV for the strange quark mass. These results together with those for three degenerate quarks suggest that QCD phase transition in nature is first order.Comment: uuencoded compressed tar file, LaTeX, 13 pages, 9 figures, Minor errors for quoting references are corrected and a reference is adde

    Finite Temperature QCD with Wilson Quarks: A Study with a Renormalization Group Improved Gauge Action

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    Finite temperature transition in lattice QCD with degenerate Wilson quarks is investigated on an Nt=4N_t=4 lattice, using a renormalization group improved gauge action. We find the following for the NF=2N_F=2 case: 1) The transition is smooth for a wide range of the quark mass. 2) The chiral transition is continuous. 3) The chiral condensation well satisfies a scaling relation with the critical exponents of the 3 dimensional O(4)O(4) spin model. For NF=3N_F=3, we find that the chiral transition is of first order.Comment: 4 pages (6 figures), Postscript file, Contribution to Lattice 95 proceeding
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