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000361802 005__ 20250905105859.0
000361802 0247_ $$2doi$$a10.1051/epjconf/202429104002
000361802 0247_ $$2ISSN$$a2100-014X
000361802 0247_ $$2ISSN$$a2101-6275
000361802 037__ $$aGSI-2025-01007
000361802 082__ $$a530
000361802 1001_ $$0P:(DE-HGF)0$$aGrunwald, Mateusz$$b0
000361802 1112_ $$a17th International Workshop on Meson Physics$$cKrakow$$d2023-06-22 - 2023-06-27$$gMESON 2023$$wPoland
000361802 245__ $$aPhoton-photon correlations in Ag+Ag collisions at √ Snn = 2.55 GeV
000361802 260__ $$aLes Ulis$$bEDP Sciences$$c2024
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000361802 520__ $$aAbstract. Photons, as penetrative probes, can deliver information about early stages of heavy-ion collisions, in contrast to hadrons, whose kinematics are determined after the freeze-out era. Given that, they provide access to quantities inaccessible for many other particle species. However, due to technical challenges of photon detection and dominance of photons from particle decays, exploiting their properties requires significant effort. Femtoscopy, a technique used to investigate the space-time characteristics of the source area, is sensitive to the emission sequence of studied particles. Hence, it can be utilized as a tool to separate photons originating from different sources. Studying femto-scopic correlations of photons can offer a new and unique perspective on source parameters before kinematic freeze-out. Using data from Ag+Ag collisions at √SNN = 2.55 GeV, collected by the HADES spectrometer, a preliminary study of photon-photon correlations was performed.
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000361802 773__ $$0PERI:(DE-600)2595425-8$$a10.1051/epjconf/202429104002$$gVol. 291, p. 04002 -$$p04002 -$$tThe European physical journal / Web of Conferences$$v291$$x2100-014X$$y2024
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