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Isotopic yield measurement in the heavy mass region for 239Pu thermal neutron induced fission

机译:239Pu热中子诱发裂变在重质量区的同位素产率测量

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Despite the huge number of fission yield data available in the different evaluated nuclear data libraries, such as JEFF-3.1.1, ENDF/B-VII.0, and JENDL-4.0, more accurate data are still needed both for nuclear energy applications and for our understanding of the fission process itself. It is within the framework of this that measurements on the recoil mass spectrometer Lohengrin (at the Institut Laue-Langevin, Grenoble, France) was undertaken, to determine isotopic yields for the heavy fission products from the 239Pu(nth,f) reaction. In order to do this, a new experimental method based on γ-ray spectrometry was developed and validated by comparing our results with those performed in the light mass region with completely different setups. Hence, about 65 fission product yields were measured with an uncertainty that has been reduced on average by a factor of 2 compared to that previously available in the nuclear data libraries. In addition, for some fission products, a strongly deformed ionic charge distribution compared to a normal Gaussian shape was found, which was interpreted as being caused by the presence of a nanosecond isomeric state. Finally, a nuclear charge polarization has been observed in agreement, with the one described on other close fissioning systems.
机译:尽管在不同的经过评估的核数据库(例如JEFF-3.1.1,ENDF / B-VII.0和JENDL-4.0)中可获得大量的裂变收率数据,但对于核能应用和我们对裂变过程本身的了解。在此框架内,对反冲质谱仪Lohengrin(位于法国格勒诺布尔的Laue-Langevin研究所)进行了测量,以确定239Pu(nth,f)反应的重裂变产物的同位素收率。为此,我们开发了一种基于γ射线光谱法的新实验方法,并通过将我们的结果与在完全不同的设置下在轻质量区域执行的结果进行了比较来进行验证。因此,测得约65种裂变产物的产量,其不确定性与核数据库中以前可获得的平均相比降低了2倍。此外,对于某些裂变产物,发现与正常的高斯形状相比,离子电荷分布发生了严重变形,这被解释为是由于存在纳秒级异构态引起的。最后,观察到核电荷极化与其他封闭裂变系统描述的一致。

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