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arXiv:0806.0126·v1·High Energy Physics — Lattice

Survival of charmonia above Tc in anisotropic lattice QCD

H.Iida (Kyoto U., Yukawa Inst., Kyoto)🇯🇵 · T.Doi (Kentucky U. & RIKEN BNL)🇺🇸 · N.Ishii (Tsukuba U., RCCP)🇯🇵 · H.Suganuma (Kyoto U.)🇯🇵 · K.Tsumura (Fujifilm, Kanagawa)🇯🇵

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Abstract

We find a strong evidence for the survival of and as spatially-localized (quasi-)bound states above the QCD critical temperature , by investigating the boundary-condition dependence of their energies and spectral functions. In a finite-volume box, there arises a boundary-condition dependence for spatially spread states, while no such dependence appears for spatially compact states. In lattice QCD, we find almost {\it no} spatial boundary-condition dependence for the energy of the system in and channels for . We also investigate the spectral function of charmonia above in lattice QCD using the maximum entropy method (MEM) in terms of the boundary-condition dependence. There is {\it no} spatial boundary-condition dependence for the low-lying peaks corresponding to and around 3GeV at . These facts indicate the survival of and as compact (quasi-)bound states for .

Comments: 4 pages, 1 figure

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