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Deeply bound pionic states in heavy nuclei

机译:重核中的深结合离子态

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摘要

The present paper reviews theoretical and experimental studies of a new type of nuclear spectroscopy for the structure of deeply bound π- states and their formation processes through "pion-transfer" nuclear reactions. The calculated energy levels of deeply bound pionic states in heavy nuclei using the standard pion-nucleus optical potential are found to be narrow discrete states even for the 1s state in ~(208)Pb. These hitherto unexpected results are caused by the repulsive pion-nucleus optical potential which pushes pionic wavefunctions outwards so that the nuclear absorption of the bound pions is weakened. Theoretical studies on pion-transfer reactions were carried out as a methodological guide to produce these deeply bound pionic states experimentally. In particular, various predictions were made on the pion-transfer proton-pickup reactions (n,d) and (d, ~3He). Following these theoretical studies successful experiments on high-resolution spectroscopy of (d, ~3He) reactions were carried out at GSI. The experimental procedures and results together with their theoretical implications are also reviewed. The most important feature of deeply bound 1s states of π- in heavy nuclei is that it provides unique information on the s-wave isovector π-N interaction which is connected to reduction of chiral symmetry breaking in the nuclear medium. Recent experiments on Pb and Sn isotopes have yielded clear evidence for partial restoration of chiral symmetry in the nuclear medium.
机译:本文综述了一种新型的核能谱的理论和实验研究,该谱用于深结合的π态的结构及其通过“介子转移”核反应的形成过程。发现即使使用〜(208)Pb的1s态,使用标准的离子核光势计算的重核中深层键合态的能级也是狭窄的离散态。迄今为止,这些出乎意料的结果是由排斥离子核的光学势引起的,该排斥势将离子波函数向外推,从而削弱了结合离子的核吸收。进行了有关介子转移反应的理论研究,以作为方法上的指导,以实验方式产生这些深深结合的介子态。特别地,对介子转移质子-拾取反应(n,d)和(d,〜3 He)做出了各种预测。根据这些理论研究,在GSI上进行了(d,〜3He)反应的高分辨率光谱的成功实验。实验程序和结果以及它们的理论意义也进行了审查。重核中π-的深束缚1s状态的最重要特征是,它提供了有关s波等矢量π-N相互作用的独特信息,该信息与减少核介质中手性对称性的破坏有关。最近对Pb和Sn同位素进行的实验已经为核介质中的手性对称性的部分恢复提供了明确的证据。

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