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重离子碰撞中通过相干同位旋和巨共振形成产生π介子的总截面和微分截面。

Total and differential cross sections for pion production via coherent isobar and giant resonance formation in heavy-ion collisions.

作者信息

Deutchman P A, Norbury J W, Townsend L W

机构信息

Department of Physics, University of Idaho, Moscow 83843, USA.

出版信息

Can J Phys. 1985;63:1242-8. doi: 10.1139/p85-203.

Abstract

A quantal many-body formalism is presented that investigates pion production through the coherent formation of a nucleonic isobar in the projectile and its subsequent decay to various pion charge states along with concomitant excitation of the target to a coherent spin-isospin giant resonance via a peripheral collision of relativistic heavy ions. Total cross sections as a function of the incident energy per nucleon and Lorentz-invariant differential cross sections as a function of pion energy and angle are calculated. It is shown that the pion angular distributions, in coincidence with the target giant resonance excitations, might provide a well-defined signature for these coherent processes.

摘要

提出了一种量子多体形式理论,该理论通过在射弹中形成核子同位旋激发态并随后衰变为各种π介子电荷态,同时通过相对论重离子的周边碰撞将靶激发到相干自旋同位旋巨共振,来研究π介子产生。计算了作为每个核子入射能量函数的总截面以及作为π介子能量和角度函数的洛伦兹不变微分截面。结果表明,与靶巨共振激发同时出现的π介子角分布可能为这些相干过程提供明确的特征。

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