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Production, isolation and characterization of radiochemically pure 163Ho samples for the ECHo-project

机译:用于回声项目的放射化学纯163HO样品的生产,分离和表征

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Several experiments on the study of the electron neutrino mass are based on high-statistics measurements of the energy spectrum following electron capture of the radionuclide 163Ho. They rely on the availability of large, radiochemically pure samples of 163Ho. Here, we describe the production, separation, characterization, and sample production within the Electron Capture in Holmium-163 (ECHo) project. 163Ho has been produced by thermal neutron activation of enriched, prepurified 162Er targets in the high flux reactor of the Institut Laue-Langevin, Grenoble, France, in irradiations lasting up to 54 days. Irradiated targets were chemically processed by means of extraction chromatography, which allowed separating the formed Ho from the 162Er target-material and from the main byproducts 170Tm and 171Tm, which are co-produced in GBq amounts. Decontamination factors of >500 for Er and of >105 for Tm and yields of 3.6·1016 and 1.2·1018 atoms of 163Ho were obtained, corresponding to a recovery yield of 95 % of Ho in the chemical separation. The Ho-fraction was characterized by means of γ-ray spectrometry, Inductively-Coupled-Plasma Mass Spectrometry (ICP-MS), Resonance Ionization Mass Spectrometry (RIMS) and Neutron Activation Analysis (NAA). In this process, the thermal neutron capture cross section of 163Ho was measured to σHo-163 to Ho-164m= (23±3) b and σHo-163 to Ho-164g= (156±9) b for the formation of the two isomers of 164Ho. Specific samples were produced for further purification by mass separation to isolate 163Ho from the Ho-isotope mixture, as needed for obtaining the energy spectrum within ECHo. The partial efficiency for this second separation step is (32±5) %.
机译:关于电子中央质量研究的几个实验基于放射性核素163Ho电子捕获后的能谱的高统计测量。他们依靠163小时的大型放射化学上纯样品的可用性。在这里,我们描述了在Holmium-163(Echo)项目中的电子捕获内的生产,分离,表征和样品生产。 163HO由热中子激活的富集,预先预定的162次靶向Institut Laue-Langevin,Grengle,法国的高通量反应器,在持续54天的照射中。通过提取色谱法化学处理辐照的靶,其允许将形成的HO与162er靶材料和主要副产物170Tm和171tm分离,其在GBQ量中共产生。获得> 500的净化因子和Tm> 105的净化因子和3.6·1016和1.2·1018原子的163℃,对应于化学分离中的95%的回收率为95%。通过γ射线光谱法,电感耦合等离子体质谱(ICP-MS),共振电离质谱(轮辋)和中子激活分析(NAA),其特征在于HO级分。在该过程中,将163HO的热中子捕获横截面测量至HO-164M =(23±3)B和ΣHO-163至HO-164G =(156±9)B以形成两者164ho的异构体。通过质量分离进一步纯化特异性样品以根据获得回波内的能谱,根据需要将163小时分离163HO。该第二分离步骤的部分效率为(32±5)%。

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