24,472 research outputs found
Tetraquark resonances, flip-flop and cherry in a broken glass model
We develop a formalism to study tetraquarks using the generalized flip-flop
potential, which include the tetraquark potential component. Technically this
is a difficult problem, needing the solution of the Schr\"odinger equation in a
multidimensional space. Since the tetraquark may at any time escape to a pair
of mesons, here we study a simplified two-variable toy model and explore the
analogy with a cherry in a glass, but a broken one where the cherry may escape
from. We also compute the decay width in this two-variable picture, solving the
Schr\"odinger equation for the outgoing spherical wave.Comment: 9 pages, 6 figures, 1 table, contribution to the proceedings of
MINI-WORKSHOP BLED 2010: DRESSING HADRONS, Bled (Slovenia), July 4 - 11, 201
Colour field flux tubes and Casimir scaling for various SU(3) representations
We investigate the QCD flux tubes linking static colour charges of different
SU(3) representations, relevant to the understanding of confinement and of the
Lund strings of Heavy Ion Collisions. The colour field densities, the Casimir
scaling factors and the widths for the flux tubes of the first five different
representations are computed in quenched SU(3) lattice QCD. This study is
relevant to understand the mechanisms of confinement and also the flux tubes
utilized in the Lund Model and in other models of Heavy Ion Collisions.Comment: 8 pages, 5 figures, 2 tables, many new references adde
First study of the three-gluon static potential in Lattice QCD
We estimate the potential energy for a system of three static gluons in
Lattice QCD. This is relevant for the different models of three-body glueballs
have been proposed in the literature, either for gluons with a constituent
mass, or for massless ones. A Wilson loop adequate to the static hybrid
three-body system is developed. We study different spacial geometries, to
compare the starfish model with the triangle model, for the three-gluon
potential. We also study two different colour structures, symmetric and
antisymmetric, and compare the respective static potentials. A first simulation
is performed in a periodic Lattice, with and fm.Comment: 8 pages, 10 figure
Spin inversion devices with Fano anti-resonances
Analyzing spin transport of quasi-2D electrons gas moving through a
semiconductor wave guide subject to a sectionally homogeneous tilted magnetic
field, we found well-defined selection rules for resonant and antiresonant spin
carrier transmission. Based on these selection rules and the band shift induced
by the magnetic field strength and the tilting angles, we propose an efficient
spin inversion device. For a polarized incoming electron beam, we can determine
from our theoretical approach, physical conditions for spin-inversion
efficiency up to 80%. We visualize this mechanism in terms of conductance and
the spacial behavior of the wave function amplitude along the superlattice.Comment: 3 pages, 3 figures, regular pape
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