Exotic mesons in quenched lattice QCD

被引:176
作者
Bernard, C
Hetrick, JE
DeGrand, TA
Wingate, M
DeTar, C
McNeile, C
Gottlieb, S
Heller, UM
Rummukainen, K
Sugar, B
Toussaint, D
机构
[1] UNIV COLORADO, DEPT PHYS, BOULDER, CO 80309 USA
[2] UNIV UTAH, DEPT PHYS, SALT LAKE CITY, UT 84112 USA
[3] UNIV BIELEFELD, ZENTRUM INTERDISZIPLINARE FORSCH, D-4800 BIELEFELD, GERMANY
[4] INDIANA UNIV, DEPT PHYS, BLOOMINGTON, IN 47405 USA
[5] FLORIDA STATE UNIV, SUPERCOMP COMPUTAT RES INST, TALLAHASSEE, FL 32306 USA
[6] UNIV BIELEFELD, FAK PHYS, D-33501 BIELEFELD, GERMANY
[7] UNIV CALIF SANTA BARBARA, DEPT PHYS, SANTA BARBARA, CA 93106 USA
[8] UNIV ARIZONA, DEPT PHYS, TUCSON, AZ 85721 USA
[9] UNIV TSUKUBA, CTR COMPUTAT PHYS, IBARAKI, OSAKA 305, JAPAN
关键词
D O I
10.1103/PhysRevD.56.7039
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Since gluons in QCD are interacting fundamental constituents just as quarks are, we expect that in addition to mesons made from a quark and an antiquark, there should also be glueballs and hybrids (bound states of quarks, antiquarks, and gluons). In general, these states would mix strongly with the conventional <(q)over bar q> mesons. However, they can also have exotic quantum numbers inaccessible to <(q)over bar q> mesons. Confirmation of such states would give information on the role of ''dynamical'' color in low energy QCD. In the quenched approximation we present a lattice calculation of the masses of mesons with exotic quantum numbers. These hybrid mesons can mix with four quark (<(qq)over bar qq>) states. The quenched approximation partially suppresses this mixing. Nonetheless, our hybrid interpolating fields also couple to four quark states. Using a four-quark source operator, we demonstrate this mixing for the 1(-+) meson. Using the conventional Wilson quark action, we calculate both at reasonably light quark masses, intending to extrapolate to small quark mass, and near the charmed quark mass, where we calculate the masses of some <(c)over bar cg> hybrid mesons. The hybrid meson masses are large-over 4 GeV for charmonium and more than twice the vector meson mass at our smallest quark mass, which is near the strange quark mass. [S0556-2821(97)06123-7].
引用
收藏
页码:7039 / 7051
页数:13
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