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Development of the Active Correlation Method: Theoretical-Methodological Aspect

机译:发育活性相关方法:理论方法论方面

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摘要

The Dubna Gas-Filled Recoil Separator (DGFRS) of the Flerov Laboratory of Nuclear Reactions (FLNR), JINR, is the most advanced facility for the synthesis and study of new superheavy nuclei. In the recent years, new elements with Z = 114 to 118 (Fl, Mc, Lv, Ts, Og) have been successfully synthesized. The DGFRS detection system and a unique method of active correlations for background suppression have played a significant role in these discoveries. Theoretical-methodological aspects of further development of the active correlation method are considered, especially in view of the upcoming commissioning of the new FLNR high-intensity DC-280 cyclotron for acceleration of heavy ions and the new gas-filled recoil separator. A numerical model of the edge effects between the neighboring strips on the p-n junction side of the DSSSD detector is presented. The corresponding empirical examples are given. A more flexible real-time algorithm is considered as a possible substitute for the current version with the rigidly set parameters. Since stability of the calibration parameters is strongly required for applying the method, the radiation stability factor is also briefly considered.
机译:核对核反应(FLNR)的Flerov实验室(FLNR),Jinr的杜巴群填充反冲分离器(DGFRS)是最先进的合成和研究新的超核核。近年来,已成功地合成了具有Z = 114至118(FL,MC,LV,TS,OG)的新元素。 DGFRS检测系统和背景抑制的独特主动相关方法在这些发现中发挥了重要作用。考虑了有源相关方法的进一步发展的理论方法论方面,特别是考虑到新的FLNR高强度DC-280回旋通,用于加速重离子和新的煤气填充后弧分离器的较新调试。呈现了DSSSD检测器的P-N结侧的相邻条带之间的边缘效应的数值模型。给出相应的经验例。具有更灵活的实时算法被认为是具有刚性设置参数的当前版本的可能替代。由于应用该方法强烈需要校准参数的稳定性,因此还简要考虑辐射稳定性因子。

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