Ion implantation of the electron-capture nuclide 55Fe for measurements by means of metallic microcalorimeters

IF 1.8 3区 工程技术 Q3 CHEMISTRY, INORGANIC & NUCLEAR Applied Radiation and Isotopes Pub Date : 2025-01-27 DOI:10.1016/j.apradiso.2025.111693
Thorben Niemeyer , Daniel Mowitz , Sebastian Berndt , Jörn Beyer , Holger Dorrer , Christoph E. Düllmann , Alexander Göggelmann , Raphael Hasse , Sebastian Kempf , Tom Kieck , Nina Kneip , Karsten Kossert , Andrea T. Loria Basto , Christoph Mokry , Michael Müller , Ole J. Nähle , Dennis Renisch , Jörg Runke , Dominik Studer , Marcell P. Takács , Klaus Wendt
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Abstract

Precise measurements of fundamental decay data such as energies and transition probabilities of radioactive isotopes are important for the development of corresponding nuclear modelling, activity determination and various applications in science and technology. The EMPIR project PrimA-LTD -“Towards new Primary Activity standardisation methods based on Low-Temperature Detectors” - aims to measure the electron-capture decay of 55Fe very precisely using Metallic Microcalorimeters (MMCs) with outstandingly high energy resolution. Using a high-statistics measurement, electron-capture probabilities shall be precisely determined and higher-order effects such as electron shake-up and shake-off shall be examined with unprecedented precision. A key to success for this project is sample preparation. This work reports on the implantation of 55Fe into the 140 μm × 140 μm gold absorbers of the MMCs as a proof of principle for scalability. Building up on preparatory laser-spectroscopic studies on stable 56Fe, laser resonance ionization at the RISIKO mass separator was used to produce a monoisotopic 55Fe ion beam with the required specifications. Successful implantations of this isotope (i) into 32 test absorbers with about 0.7(2) Bq each and (ii) into various on-chip absorbers with an activity close to the requested 5 Bq per absorber are presented. The impact of the implantation on the quality of spectra is highlighted on the basis of first MMC test measurements.
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金属微热计测量中电子俘获核素55Fe的离子注入。
放射性同位素的能量和跃迁概率等基本衰变数据的精确测量,对于发展相应的核模型、活动测定和科学技术中的各种应用都很重要。EMPIR项目PrimA-LTD -“基于低温探测器的新的初级活度标准化方法”-旨在使用具有极高能量分辨率的金属微热量计(mmc)非常精确地测量55Fe的电子捕获衰变。使用高统计量测量,电子捕获概率必须精确确定,高阶效应,如电子振荡和振荡,必须以前所未有的精度进行检查。这个项目成功的关键是样品准备。本文报道了55Fe注入到mmc的140 μm × 140 μm金吸收剂中,作为可扩展性原理的证明。建立在对稳定的56Fe的预备激光光谱研究的基础上,在RISIKO质量分离器上使用激光共振电离来产生具有所需规格的单同位素55Fe离子束。成功地将该同位素(i)植入32个测试吸收器中,每个吸收器的活度约为0.7 Bq, (ii)植入各种片上吸收器中,每个吸收器的活度接近要求的5 Bq。在第一次MMC测试测量的基础上,重点讨论了注入对光谱质量的影响。
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来源期刊
Applied Radiation and Isotopes
Applied Radiation and Isotopes 工程技术-核科学技术
CiteScore
3.00
自引率
12.50%
发文量
406
审稿时长
13.5 months
期刊介绍: Applied Radiation and Isotopes provides a high quality medium for the publication of substantial, original and scientific and technological papers on the development and peaceful application of nuclear, radiation and radionuclide techniques in chemistry, physics, biochemistry, biology, medicine, security, engineering and in the earth, planetary and environmental sciences, all including dosimetry. Nuclear techniques are defined in the broadest sense and both experimental and theoretical papers are welcome. They include the development and use of α- and β-particles, X-rays and γ-rays, neutrons and other nuclear particles and radiations from all sources, including radionuclides, synchrotron sources, cyclotrons and reactors and from the natural environment. The journal aims to publish papers with significance to an international audience, containing substantial novelty and scientific impact. The Editors reserve the rights to reject, with or without external review, papers that do not meet these criteria. Papers dealing with radiation processing, i.e., where radiation is used to bring about a biological, chemical or physical change in a material, should be directed to our sister journal Radiation Physics and Chemistry.
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