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Ground state properties of superheavy nuclei in relativistic mean field theory

机译:相对论平均场理论中超重核的基态性质。

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摘要

In the framework of the relativistic mean field (RMF) theory, the stability and ground properties of super-heavy nuclei are discussed. Our study indicated that the current synthesized super-heavy nuclei (SHN) actually appear in the stable region, and adding more neutrons will not increase their stability. The study of nuclei from (287)115 a decay chain showed that they are usually deformed, the magnitudes of their shell gaps are much smaller than those of nuclei before the actinium region, so that the shell effect is weakened, and SHN are usually not stable. A common phenomenon is that the Fermi surface of the proton is close to the continuum, the resonant continuums exist in SHN, because the SHN are usually neutron deficient. Although bulk properties can be described by the RMF+BCS theory, further study is needed. Density dependent delta pairing interaction can improve the treatment of the pairing and thus improve the level distribution in the continuum.
机译:在相对论平均场(RMF)理论的框架内,讨论了超重核的稳定性和地面性质。我们的研究表明,当前合成的超重核(SHN)实际上出现在稳定区域,添加更多的中子不会增加其稳定性。对来自(287)115衰变链的核的研究表明,它们通常会发生变形,其壳隙的幅度远小于the系区域之前的核,因此壳效应减弱,而SHN通常不稳定。一个常见的现象是质子的费米表面接近连续体,SHN中存在共振连续体,因为SHN通常缺乏中子。尽管可以用RMF + BCS理论描述整体性质,但仍需要进一步研究。依赖密度的配对配对可以改善配对的处理,从而改善连续体中的水平分布。

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