双重子研究的一些新进展课件.ppt
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1、Multi-Strangeness Dibaryon,T.Goldman,TD,LANLY.X.Liu,Peking Univ.X.F.Lu,Sichuan Univ.J.L.Ping,Nanjing Normal Univ.Fan Wang,Nanjing Univ.,Contents,“Discovery”of multi-quark states.Candidates of multi-strangeness dibaryons.RHIC is a factory of multi-quark.Nonperturbative QCD basis of quark models.Propo
2、sal,“Discovery”of Multiquark,The“discovery”of multiquark states sets challenges as well asopportunities to quark models.Eleven groups claimed that they observed a penta quark state,called+:+:I=0,J=1/2,Parity=?,M=1540MeV,25MeV,NA49-:I=3/2,M=1862MeV,18MeV,H1 c:I=0,M=3099 MeV,Four groups clamed that th
3、ey observed tetra quark states.Up to now no dibaryon or hexa quark state has been observed.If the Pendora box of multi quark really has been opened,all of these multiquark states should appear sooner or later.The discovery of multi-quark states sets challenges as well asopportunities to quark models
4、,even lattice QCD and others.Four lattice QCD calculations gave totally different results.There have been more than 200 papers about pentaquark but noconsensus yet.,Candidates of Dibaryons,Candidates of Multi-Strangeness Dibaryons.Chiral soliton quark model prediction of the+played a vital role in t
5、he“discovery”of+.Quark model predictions of dibaryon:1.H(uuddss)I=0,Jp=0+,S=-2 Wang Zhang others Threshold M(MeV)2228 2223 deeply bound 2231 2230 2233 to unbound(2230-32)Quite impossible to be deeply bound.More than 25 years search with null result.,2.I=0,Jp=0+,S=-6 Wang Zhang Others Threshold M(MeV
6、)3298 3229 deeply bound 3345 3300 3292 to unbound(3300-4)Similar to H particle,weakly bound orunbound.,3.N I=1/2,Jp=2+,S=-2 Wang Zhang Others ThresholdM(MeV)2549 2561 deeply bound 2611 2557 2607 to unbound(2590)(keV)12-22Decay mode N-1D2,3D2.Quite possible a narrow resonance.(Wang:PRL 59(87)627,69(9
7、2)2901,PRC 51(95)3411,62(00)054007,65(02)044003,69(04)065207;Zhang:PRC 52(95)3393,61(00)065204,NPA 683(01)487.),RHIC,a multiquak factory,RHIC is a factory of multiquark statesespecially multi strangeness dibaryons.High strangeness production.Hadronization and clustering at theboundary of fire ball.S
8、handong group estimation:no problem to produce N in one event,but hard to have in one event.,Nonperturbative QCD basis of quark models,Nonperturbative QCD basis of quark models.How reliable are these quark model predictions?Wang(QDCSM or Nanjing-Los Alamos model)Zhang(chiral quark model or Tokyo-Tue
9、bingen-Beijing-Salamanka model)both fit the existed NB scattering data(Zhangs better)and deuteron properties(Wangs better).The effective attraction developed in and N channels is quite model independent.There are many other quark models but I will not talkabout them here.,Quark-Goldstone boson coupl
10、ing,From current-quark gluon QCD toconstituent quark Goldstone boson effective theory t Hooft-Shuryak-Diakonov dilute instantonliquid vacuum(DILM).(NPB 203,245,461)Negeles lattice QCD supports DILM(fig.1).(PRD49(94)6039)Our group reproduced part of Negeles result.It has not been proved but might be
11、a goodapproximation of QCD vacuum.,Current quark propagating within the DILM(fig.2)(NPB 272(86)457;hep-ph/0406043)Current quark m is dressed to be constituentquark M(q2)(fig.3)The QCD Lagrangian is transformed to bethe effective Lagrangian,Our group derive an effective Lagrangianbased on chiral symm
12、etry spontaneouslybroken and its nonlinear realization,The constituent quark field operator c isrelated to the current quark operator by,The form of dynamically derived effective Lagrangian,such as the former Diakonovs Lagragian,is model dependent,but the nonlinear coupling is dictated by the chiral
13、 symmetryspontaneously broken as we did.The linear approximation of Zhang(NPA 683(01)487)and others,such as Glozman&Riska,Phys.Reports,268(96)263,missed the higher order terms,which should be important for shortrange physics,such as multi quark study.The SU(3)extension of linear approximation is eve
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