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We provide, within the hydrokinetic model, a detailed investigation of kaon interferometry in Pb+Pb collisions at LHC energy (sNN=2.76 TeV). Predictions are presented for 1D interferometry radii of KS0KS0 and K±K± pairs as well as for 3D femtoscopy scales in out, side and long directions. The results are compared with existing pion interferometry radii. We also make predictions for full LHC energy.
A method for quantum corrections of Hanbury-Brown/Twiss (HBT) interferometric radii produced by semi-classical event generators is proposed. These corrections account for the basic indistinguishability and mutual coherence of closely located emitters caused by the uncertainty principle. A detailed analysis is presented for pion interferometry in p+p collisions at LHC energy (s=7 TeV). A prediction...
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