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首页> 外文期刊>Journal of Physics, G. Nuclear and Particle Physics: An Institute of Physics Journal >Magnetic moments of short-lived excited nuclear states: measurements and challenges
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Magnetic moments of short-lived excited nuclear states: measurements and challenges

机译:短时激发核态的磁矩:测量和挑战

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摘要

Magnetic moments have in general provided substantial information on the microscopic structure of nuclear states. Advances in technology have made it possible to measure, with reasonable accuracy, magnetic moments of nuclear states with lifetimes of the order of picoseconds or less. Improvements over the last decade involve all experimental aspects ranging from the availability of a wide variety of stable and radioactive beams, to the realization of highly segmented, high resolution detector arrays. A microscopic understanding of the hyperfine interaction between the nuclear moments and the ferromagnetic environment with which they interact has not yet been reached. Nevertheless, elegant applications of the new experimental techniques have allowed the measurement of nuclear moments of many nuclear states that were not accessible previously. Such measurements have shown how these moments vary with energy, spin and temperature in specific nuclei, or across isotopic chains. New results, in turn, have placed stringent constraints on theoretical calculations. The technical advances and selected highlights of relevant measurements across the periodic table are described in this review. Recent examples of applications of transient field and recoil- in- vacuum techniques in a radioactive beam environment are presented.
机译:磁矩通常提供了有关核态微观结构的大量信息。技术的进步使人们有可能以合理的精度来测量核状态的磁矩,其寿命约为皮秒或更短。过去十年的改进涉及所有实验方面,从提供多种稳定和放射性束到实现高度分段的高分辨率探测器阵列。尚未对核矩与它们相互作用的铁磁环境之间的超精细相互作用有一个微观的了解。尽管如此,新实验技术的巧妙应用已经允许测量以前无法获得的许多核态的核矩。这样的测量表明这些矩如何随能量,自旋和温度在特定原子核或整个同位素链中变化。反过来,新的结果对理论计算也施加了严格的限制。这篇综述描述了整个元素周期表的技术进步和相关测量的选定重点。介绍了瞬态场和真空反冲技术在放射性射束环境中的最新应用实例。

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