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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Atomic spectroscopy studies of short-lived isotopes and nuclear isomer separation with the ISOLDE RILIS
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Atomic spectroscopy studies of short-lived isotopes and nuclear isomer separation with the ISOLDE RILIS

机译:用ISOLDE RILIS进行的短寿命同位素和核异构体分离的原子光谱研究

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摘要

The resonance ionization laser ion source (RILIS) at the ISOLDE on-line isotope separator is based on the selective excitation of atomic transitions by tunable laser radiation. Ion beams of isotopes of 20 elements have been produced using the RILIS setup. Together with the mass separator and a particle detection system it represents a tool for high-sensitive laser spectroscopy of short-lived isotopes. By applying narrow-bandwidth lasers for the RILIS one can study isotope shifts and hyperfine structure (HFS) of atomic optical transitions. Such measurements are capable of providing data on nuclear charge radii, spins and magnetic moments of exotic nuclides far from stability. Although the Doppler broadening of the optical absorption lines limits the resolution of the technique, the accuracy of the HFS measurements examined in experiments with stable Tl isotopes approaches a value of 100 MHz. Due to the hyperfine splitting of atomic lines the RILIS gives an opportunity to separate nuclear isomers. Isomer selectivity of the RILIS has been used in studies of short-lived Ag, Cu and Pb isotopes.
机译:ISOLDE在线同位素分离器上的共振电离激光离子源(RILIS)基于可调谐激光辐射对原子跃迁的选择性激发。使用RILIS装置已经产生了20种元素的同位素离子束。与质量分离器和颗粒检测系统一起,它代表了一种用于短期同位素的高灵敏度激光光谱学的工具。通过将窄带宽激光器应用于RILIS,可以研究原子光学跃迁的同位素位移和超精细结构(HFS)。这样的测量能够提供关于核电荷半径,自旋和外来核素的磁矩的数据,这些数据远非稳定。尽管光学吸收线的多普勒展宽限制了该技术的分辨率,但是在具有稳定的T1同位素的实验中检查的HFS测量的准确性接近100 MHz。由于原子线的超细分裂,RILIS提供了分离核异构体的机会。 RILIS的异构体选择性已用于研究短寿命的Ag,Cu和Pb同位素。

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