Observation of two-source interference in the photoproduction reaction AuAu→AuAuρ0

Publication date

2009

Authors

Abelev, B.I.
Bai, Y.
Benedosso, F.ISNI 0000000389938283
Botje, M.A.J.ISNI 0000000389441306
Braidot, EISNI 0000000388678889
Mischke, A.ISNI 0000000394607331
Peitzmann, T.ISNI 0000000396028229
Russcher, M.J.
Snellings, RaimondISNI 0000000394558605
van Leeuwen, M.ORCID 0000-0002-5222-4888ISNI 0000000392034832

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Abstract

In ultraperipheral relativistic heavy-ion collisions, a photon from the electromagnetic field of one nucleus can fluctuate to a quark-antiquark pair and scatter from the other nucleus, emerging as a ρ0. The ρ0 production occurs in two well-separated (median impact parameters of 20 and 40 F for the cases considered here) nuclei, so the system forms a two-source interferometer. At low transverse momenta, the two amplitudes interfere destructively, suppressing ρ0 production. Since the ρ0 decays before the production amplitudes from the two sources can overlap, the two-pion system can only be described with an entangled nonlocal wave function, and is thus an example of the Einstein-Podolsky-Rosen paradox. We observe this suppression in 200 GeV per nucleon-pair gold-gold collisions. The interference is 87%±5%(stat.)±8%(syst.) of the expected level. This translates into a limit on decoherence due to wave function collapse or other factors of 23% at the 90% confidence level.

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Citation

Abelev, B I, Bai, Y, Benedosso, F, Botje, M A J, Braidot, E, Mischke, A, Peitzmann, T, Russcher, M J, Snellings, R J M & van Leeuwen, M 2009, 'Observation of two-source interference in the photoproduction reaction AuAu→AuAuρ0', Physical Review Letters, vol. 102, no. 1, pp. 112301/1-112301/7.