8,349 research outputs found

    Magnetic Oscillations in the Nambu - Jona-Lasinio model

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    The phase structure of a simple Nambu-Jona-Lasinio model has been investigated at non-zero values of μ\mu and H, where H is an external magnetic field and μ\mu is the chemical potential. On this basis magnetic oscillations effects were considered. It was shown that there are standard (periodic) van Alphen-de Haas magnetic oscillations of some thermodynamical quantities, including magnetization, pressure and particle density in the NJL system. Besides, we have found non-standard, i.e. non-periodic, magnetic oscillations, since the frequency of oscillations is a H-dependent quantity. Finally, there arises an oscillating behaviour not only for thermodynamical quantities, but also for a dynamical quantity like the quark mass. The possibility for magnetic oscillations of some physical quantities inside neutron stars is discussed.Comment: RevTeX, 12 pages; Talk given by K.G. Klimenko at the International Workshop on Hadron Physics, 10-15 September 1999, Coimbra, Portuga

    Excited heavy tetraquarks with hidden charm

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    The masses of the excited heavy tetraquarks with hidden charm are calculated within the relativistic diquark-antidiquark picture. The dynamics of the light quark in a heavy-light diquark is treated completely relativistically. The diquark structure is taken into account by calculating the diquark-gluon form factor. New experimental data on charmonium-like states above open charm threshold are discussed. The obtained results indicate that X(3872), Y(4260), Y(4360), Z(4248), Z(4433) and Y(4660) could be tetraquark states with hidden charm.Comment: 11 page

    Diquarks in the color--flavor locked phase of dense quark matter

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    Diquark excitations of dense quark matter are considered in the framework of the Nambu -- Jona-Lasinio model with three types of massless quarks in the presense of a quark number chemical potential μ\mu. We investigate the effective action of meson- and diquark fields at sufficiently high values of μ\mu, where the color--flavor locked (CFL) phase is realized, and prove the existence of NG-bosons in the sector of pseudoscalar diquarks. In the sector of scalar diquarks an additional NG-boson is found, corresponding to the spontaneous breaking of the U(1)B_B baryon symmetry in the CFL phase. Finally, the existence of massive scalar and pseudoscalar diquark excitations is demonstrated.Comment: 10 pages, 2 figures; version accepted for publication in PR

    Mesons and diquarks in neutral color superconducting quark matter with β\beta-equilibrium

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    The spectrum of meson and diquark excitations in cold color-superconducting (2SC) quark matter is investigated under local color and electric neutrality constraints with β\beta-equilibrium. A 2-flavored Nambu--Jona-Lasinio type model including a baryon μB\mu_B, color μ8\mu_8, and electric μQ\mu_Q chemical potentials is used. Two relations between coupling constants HH and GG in the diquark- and quark-antiquark channels, correspondingly, are treated, H=3G/4H=3G/4 and H=GH=G. At H=3G/4H=3G/4 the gapless- and at H=GH=G the gapped neutral color superconductivity is realized. It is shown that color and electrical neutrality together with β\beta-equilibrium lead to a strong mass splitting within the pion isotriplet in the 2SC phase (both gapped and gapless), in contrast with non--neutral matter. It is also shown that the properties of the physical SU(2)cSU(2)_c-singlet diquark excitation in the 2SC ground state varies for different parameterization schemes. Thus, for H=3G/4H=3G/4 one finds a heavy resonance with mass ∼\sim 1100 MeV in the non--neutral (gapped) case, whereas, if neutrality is imposed, a stable diquark with mass ∼μQ∼\sim\mu_Q\sim 200 MeV appears in the gapless 2SC phase. For H=GH=G, there is again a resonance (with the mass ∼\sim 300 MeV) in the neutral gapped 2SC phase. Hence, the existence of the stable massive SU(2)c_c-singlet diquark excitation is a new peculiarity of the gapless 2SC.Comment: 18 pages, 9 figures; version accepted for publication in PR

    Characterization of polyacrylonitrile ultrafiltration membranes

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    Various methods have been used to characterize ultrafiltration membranes, such as gas flux measurements, (field emission) scanning electron microscopy, permporometry and liquid-liquid displacement. Significant differences in the pore size distributions determined from permporometry and liquid-liquid displacement were found
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