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Rare isotope production in the Fermi energy regime and application to the Texas A&M RIB Upgrade

机译:费米能谱中的稀有同位素生产及其在德克萨斯A&M RIB升级中的应用

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An overview of recent efforts to produce and separate neutron-rich rare isotopes in quasielastic and deep-inelastic collisions around and below the Fermi energy is presented. The experiments have been performed at the Cyclotron Institute of Texas A&M University employing beams from the K500 Superconducting Cyclotron. Two magnetic separators were used: the MARS recoil separator and the Superconducting Solenoid Line (BigSol Line). In these efforts we observed an enhanced production of neutron-rich nuclides in comparison with high-energy fragmentation mechanisms. This trend has been attributed to the role of the N/Z ratio and the nuclear periphery of the target. From a practical viewpoint, we conclude that reactions below or around the Fermi energy offer a novel way to access very neutron-rich rare isotopes. The experience obtained in the production of rare isotope beams (RIB) below the Fermi energy will be exploited in the ongoing RIB Upgrade of the Cyclotron Institute that will involve production, stopping and reacceleration of rare isotopes.
机译:概述了最近在费米能量附近和以下通过准弹性和深非弹性碰撞产生和分离中子稀有同位素的努力。实验是在得克萨斯州A&M大学回旋加速器研究所使用K500超导回旋加速器的光束进行的。使用了两种电磁分离器:MARS反冲分离器和超导螺线管(BigSol线)。在这些努力中,与高能碎裂机制相比,我们观察到了富含中子的核素的产生增加。这种趋势归因于N / Z比和目标核外围的作用。从实际角度出发,我们得出结论,费米能量以下或周围的反应提供了一种获取非常富中子的稀有同位素的新颖方法。在费米能量以下的稀有同位素束(RIB)生产中获得的经验将用于回旋加速器研究所正在进行的RIB升级中,该过程将涉及稀有同位素的生产,停止和再加速。

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