Causality constraints on hadron production in high energy collisions

Castorina P, Satz H (2014)
International Journal of Modern Physics E 23(4).

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Abstract
For hadron production in high energy collisions, causality requirements lead to the counterpart of the cosmological horizon problem: the production occurs in a number of causally disconnected regions of finite space-time size. As a result, globally conserved quantum numbers (charge, strangeness, baryon number) must be conserved locally in spatially restricted correlation clusters. This provides a theoretical basis for the observed suppression of strangeness production in elementary interactions (pp, e(+)e(-)). In contrast, the space-time superposition of many collisions in heavy ion interactions largely removes these causality constraints, resulting in an ideal hadronic resonance gas in full equilibrium.
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Castorina P, Satz H. Causality constraints on hadron production in high energy collisions. International Journal of Modern Physics E. 2014;23(4).
Castorina, P., & Satz, H. (2014). Causality constraints on hadron production in high energy collisions. International Journal of Modern Physics E, 23(4). doi:10.1142/S0218301314500190
Castorina, P., and Satz, H. (2014). Causality constraints on hadron production in high energy collisions. International Journal of Modern Physics E 23.
Castorina, P., & Satz, H., 2014. Causality constraints on hadron production in high energy collisions. International Journal of Modern Physics E, 23(4).
P. Castorina and H. Satz, “Causality constraints on hadron production in high energy collisions”, International Journal of Modern Physics E, vol. 23, 2014.
Castorina, P., Satz, H.: Causality constraints on hadron production in high energy collisions. International Journal of Modern Physics E. 23, (2014).
Castorina, Paolo, and Satz, Helmut. “Causality constraints on hadron production in high energy collisions”. International Journal of Modern Physics E 23.4 (2014).
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