Pion interferometry with pion–source-medium interactions
M. C. Chu, Susan Gardner, Tetsuo Matsui, R. Seki
Abstract
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M. C. Chu, Susan Gardner, Tetsuo Matsui, R. Seki
Abstract
Open-access reader
An extended pion source, which can be temporarily created by a high energy nuclear collision, will also absorb and distort the outgoing pions. We discuss how this effect alters the interferometric pattern of the two-pion momentum correlation function. In particular, we show that the two-pion correlation function decreases rapidly when the opening angle between the pions increases. The opening-angle dependence should serve as a new means of obtaining information about the pion source in the analysis of experimental data.
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An extended pion source, which can be temporarily created by a high energy nuclear collision, will also absorb and distort the outgoing pions. We discuss how this effect alters the interferometric pattern of the two-pion momentum correlation function. In particular, we show that the two-pion correlation function decreases rapidly when the opening angle between the pions increases. The opening-angle dependence should serve as a new means of obtaining information about the pion source in the analysis of experimental data.
Key concepts: Pion, Physics, Interferometry, Momentum (technical analysis), Nuclear physics, Particle physics, Correlation function (quantum field theory), Function (biology)