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JOURNALS // Pis'ma v Zhurnal Èksperimental'noi i Teoreticheskoi Fiziki // Archive

Pis'ma v Zh. Èksper. Teoret. Fiz., 2006 Volume 83, Issue 10, Pages 504–509 (Mi jetpl1306)

This article is cited in 1 paper

FIELDS, PARTICLES, AND NUCLEI

Formation of 24Mg* in the spallation of 28Si nuclei by 1-GeV protons

A. A. Васенко, N. D. Galanina, K. E. Gusev, V. S. Demidov, E. V. Demidova, I. V. Kirpichnikov, A. Yu. Sokolov, A. S. Starostin, N. A. Khaldeeva

Institute for Theoretical and Experimental Physics (Russian Federation State Scientific Center)

Abstract: The 28Si(p, p′γ0 X)24Mg reaction has been studied at the ITEP accelerator by the hadron-gamma coincidence method for a proton energy of 1 GeV. Two reaction products are detected: a 1368.6-keV γ-ray photon accompanying the transition of the 24Mg* nucleus from the first excited state to the ground state and a proton p′ whose momentum is measured in a magnetic spectrometer. The measured distribution in the energy lost by the proton in interaction is attributed to five processes: the direct knockout of a nuclear α cluster, the knockout of four nucleons with a total charge number of 2, the formation of the ΔSi isobaric nucleus, the formation of the Δ isobar in the interaction of the incident proton with a nuclear nucleon, and the production of a π meson, which is at rest in the nuclear reference frame. The last process likely corresponds to the reaction of the formation of a deeply bound pion state in the 28P nucleus. Such states were previously observed only on heavy nuclei. The cross sections for the listed processes have been estimated.

PACS: 25.40.Ep, 25.40.Sc, 25.75.Dw

Received: 31.03.2006


 English version:
Journal of Experimental and Theoretical Physics Letters, 2006, 83:10, 433–438

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