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Equation of state of U_2Mo up-to Mbar pressure range: Ab-initio study

机译:U_2MO的状态方程至mbar压力范围:AB-Initio研究

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Experimentally, U2Mo is known to exist in tetragonal structure at ambient conditions. In contrast to experimental reports, the past theoretical studies carried out in this material do not find this phase to be stable structure at zero pressure. In order to examine this discrepancy between experiment and theory, we have performed ab-initio electronic band structure calculations on this material. In our theoretical study, we have attempted to search for lowest enthalpy structure at ambient as well at high pressure up to 200 GPa, employing evolutionary structure search algorithm in conjunction with ab-inito method. Our investigations suggest that a hexagonal structure with space group symmetry P6/mmm is the lowest enthalpy structure not only at ambient pressure but also up to pressure range of ~200 GPa. To further, substantiate the results of these static lattice calculations the elastic and lattice dynamical stability has also been analysed. The theoretical isotherm derived from these calculations has been utilized to determine the Hugoniot of this material. Various physical properties such as zero pressure equilibrium volume, bulk modulus and its pressure derivative has also been derived from theoretical isotherm.
机译:通过实验,已知U2MO在环境条件下存在四边形结构。与实验报告相比,这种材料中进行的过去的理论研究没有发现该阶段在零压力下是稳定的结构。为了检查实验与理论之间的这种差异,我们已经对该材料进行了AB-Initio电子频带结构计算。在我们的理论研究中,我们试图在环境温度下寻找最低的焓结构,高达200GPa,采用进化结构搜索算法与AB-Inito方法一起使用。我们的调查表明,具有空间组对称P6 /毫米的六边形结构,不仅是环境压力的最低焓结构,而且达到200GPa的压力范围。为了进一步地,证实了这些静态晶格计算的结果,也已经分析了弹性和晶格动力稳定性。从这些计算中衍生的理论等温线已被利用来确定这种材料的Hugoniot。诸如零压力平衡体积,散装量和其压力衍生物的各种物理性质也来自理论等温线。

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