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Hadron Physics with polarized photons at 9 GeV with GlueX Richard Jones University of Connecticut UConn Physics Graduate Studies Open House, Mar. 19, 2010
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2 Future
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3 Motivation: the hadron mass spectrum in QCD Consider QCD with only heavy quarks: the light mesons are glueballs qq mesons have the conventional positronium low-energy spectrum spectrum is distorted at higher excitations by a linear potential for r > 0.5 fm a tube of gluonic flux forms between q and q 0.40.81.2 1.6 1.0 2.0 0.0 r (fm) V 0 (QQ) (GeV) glueball decay threshold Data from Lattice QCD show :
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4 gluonic excitations give rise to new potential surfaces for r >> r 0 gluonic excitations behave like flux tube oscillations flux tube model inspires the flux tube model Motivation: the hadron mass spectrum in QCD Consider QCD with only heavy quarks:
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5 Motivation: conventional vs hybrid mesons m=0 CP=(-1) S+1 m=1 CP=(-1) S Flux-tube Model ground-state flux-tube m=0 excited flux-tube m=1 CP = (-1) L+S (-1) L+1 = (-1) S+1 S=0, L=0 J=1 CP=+ J PC =1 ++,1 -- (not exotic) S=1, L=0 J=1 CP=- 0 +- J PC = 0 -+, 0 +- 1 -+ 1 -+, 1 +- 2 +- 2 -+, 2 +-exotic normal mesons 1 -+ 1 +- 1 -+ or 1 +-
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6 Recent results with unquenched lattices preliminary results Dudek et.al., preliminary results @ pion mass 700 MeV/c 2
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7 CHL-2 Upgrade magnets and power supplies 12 GeV CEBAF Upgrade
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8 Construction of Hall D is underway Current plans call for the first beam in HallD/GlueX in late 2014. Ground breaking in April 2009 Live webcam feed of Hall D site
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9 Gluex – discovery at the forefront of nuclear science
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