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Alpha Decay Half-Lives of New Superheavy Elements through Quasimolecular Shapes 被引量:1
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作者 张鸿飞 李君清 +4 位作者 左维 陈宝秋 马中玉 Soojae Im Royer Guy 《Chinese Physics Letters》 SCIE CAS CSCD 2006年第7期1734-1737,共4页
The lifetimes of a decays of the recently produced isotopes of the elements 112, 114, 116 and the element ^294118 and of some decay products have been calculated theoretically within the Wentzel-Kramers-Brillouin appr... The lifetimes of a decays of the recently produced isotopes of the elements 112, 114, 116 and the element ^294118 and of some decay products have been calculated theoretically within the Wentzel-Kramers-Brillouin approximation. The a decay barriers have been determined in the quasimolecular shape path within a generalized liquid drop model including the proximity effects between nuclei in a neck, the mass and charge asymmetry and the precise nuclear radius. These calculations provide reasonable estimates for the observed a decay lifetimes. The calculated results have been compared with the results of the density-dependent M3Y effective interaction and the experimental data. It is indicated that the theoretical foundation of the generalized liquid drop model is as good as that of the microscopic DDM3Y model, at least in the sense of predicting the T1/2 values as long as one uses a correct a decay energy. The half lives of these new nuclei are well tested from the consistence of the macroscopic, the microscopic and the experimental data. 展开更多
关键词 LIQUID-DROP MODEL DEFORMED POTENTIAL-ENERGY HEAVIEST ELEMENTS CREVICEDSHAPES NUCLEI EMISSION FISSION CA-48 BARRIER COMPACT
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Surface complexation modeling of Eu(Ⅲ) adsorption on silica in the presence of fulvic acid 被引量:5
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作者 YE YuanLv CHEN ZongYuan +3 位作者 MONTAVON Gilles JIN Qiang GUO ZhiJun WU WangSuo 《Science China Chemistry》 SCIE EI CAS 2014年第9期1276-1282,共7页
Humic substances (HS) substantially affect heavy metal (M) adsorption on mineral surfaces. However, quantitative descriptions of ternary systems involving M, HS and mineral surfaces remain unclear. This study exam... Humic substances (HS) substantially affect heavy metal (M) adsorption on mineral surfaces. However, quantitative descriptions of ternary systems involving M, HS and mineral surfaces remain unclear. This study examines adsorption in a model ternary system including Eu(III), fulvic acid (FA) and silica, and describes the adsorption of Eu(III) and FA by combining a double-layer model (DLM) and the Stockholm humic model (SHM). SHM explains the binding of H+ and Eu^3+ to EA and the DLM for FA and Eu(Ill) adsorption on silica. Experimental results showed that the presence of FA promotes Eu(III) adsorp- tion at acidic pH values, but decreases it at basic pH values, which indicates the formation of ternary surface complexes. Modeling calculations have shown that two ternary surface complexes are required to describe the experimental results in which Eu^3+ acts as a bridge between the surface site and FA. The present study suggests that the discrete-site approach to HS is a promising method for interpreting the adsorption data for M, HS and mineral ternary systems. 展开更多
关键词 Eu(III) fuivic acid ADSORPTION SILICA Stockholm humic model
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Elliptic flow of direct photons in Au+Au collisions at 200 GeV
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作者 刘复明 Tetsufumi Hirano +1 位作者 Klaus Werner 朱燕 《Chinese Physics C》 SCIE CAS CSCD 2010年第9期1433-1435,共3页
The rapidity dependence of the elliptic flow of direct photons in Au+Au collisions at√ s NN = 200 GeV are predicted,based on a three-dimensional ideal hydrodynamic description of the hot and dense matter.The rapidit... The rapidity dependence of the elliptic flow of direct photons in Au+Au collisions at√ s NN = 200 GeV are predicted,based on a three-dimensional ideal hydrodynamic description of the hot and dense matter.The rapidity dependence of the elliptic flow v 2 (y) of direct photons (mainly thermal photons) is very sensitive to the initial energy density distribution along longitudinal direction,which provides a useful tool to extract the realistic initial condition from measurements. 展开更多
关键词 thermal photons elliptic flow HYDRODYNAMICS
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