First results from the CRIS experiment

被引:0
|
作者
K. T. Flanagan
J. Billowes
M. L. Bissell
I. Budinčević
T. E. Cocolios
R. P. de Groote
S. De Schepper
V. N. Fedosseev
S. Franchoo
R. F. Garcia Ruiz
H. Heylen
K. M. Lynch
B. A. Marsh
G. Neyens
T. J. Procter
R. E. Rossel
S. Rothe
I. Strashnov
H. H. Stroke
K. D. A. Wendt
机构
[1] The University of Manchester,School of Physics and Astronomy
[2] KU Leuven,Instituut voor Kern
[3] CERN, en Stralingsfysica
[4] Institut de Physique Nucléaire d’Orsay,Engineering Department
[5] New York University,Department of Physics
[6] Johannes Gutenberg-Universität Mainz,Institut für Physik
来源
Hyperfine Interactions | 2014年 / 227卷
关键词
Laser spectroscopy; Nuclear structure;
D O I
暂无
中图分类号
学科分类号
摘要
The ability to study rare isotopes with techniques such as mass spectrometry and laser spectroscopy is often prevented by low production rates and large isobaric contamination. This has necessitated the development of novel beam cleaning techniques that can efficiently isolate the isotope of interest. The Collinear Resonance Ionization Spectroscopy (CRIS) experiment at ISOLDE, achieves this by resonantly ionizing a bunched atom beam in a region of ultra high vacuum. This method is motivated by the need to measure the hyperfine structure and isotope shift at the extremes of isospin where typical production rates drop to 1 atom/s. The technique also offers the ability to purify an ion beam and even select long-lived isomeric states (> 1 ms) from the ground state, which can be subsequently studied by decay spectroscopy or mass spectrometry experiments. This paper will report on the successful commissioning of the CRIS beam line and the recent laser spectroscopy results and laser assisted nuclear decay spectroscopy on the neutron deficient francium isotopes.
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页码:131 / 137
页数:6
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