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首页> 外文期刊>International Journal of Quantum Chemistry >Structural Properties of Crystalline Uranium from Linear Combination of Gaussian-Type Orbitals Calculations
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Structural Properties of Crystalline Uranium from Linear Combination of Gaussian-Type Orbitals Calculations

机译:从高斯型轨道的线性组合计算得出的结晶铀的结构性质

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Scalar-relativistic linear combinations of Gaussian-type orbitals-fitting function (LCGTO-FF) calculations, using the local density approximation (LDA) and generalized gradient approximation (GGA) to density functional theory, were used to determine the atomic volumes, bulk moduli, and relative stabilities of uranium in the fcc, bcc, and #alpha#-U (orthorhombic) phases. The #alpha#-U phase is found to be the most stable, in agreement with experiment. The LDA yields an atomic volume that is about 7% smaller than experiment, while the GGA produces near perfect agreement with experiment. The numerical stability of the LCTTO-FF results is tested by comparison with a similar series of scalar-relativistic calculations using the full-potential linearized augmented plane-wave (FLAPW) method. The results obtained with the two methods are in excellent agreement, demonstrating the ability of the LCTTO-FF method to address the properties of a light actinide metal in its low-symmetry #alpha# phase.
机译:使用局部密度近似(LDA)和广义梯度近似(GGA)到密度泛函理论的高斯型轨道拟合函数(LCGTO-FF)计算的标量-相对论线性组合用于确定原子体积,体模量,以及铀在fcc,bcc和#alpha#-U(斜方晶系)阶段的相对稳定性。与实验一致,发现#alpha#-U相最稳定。 LDA产生的原子量比实验小约7%,而GGA与实验产生的原子量接近完美。通过与使用全电势线性化增强平面波(FLAPW)方法的一系列类似的标量相对论计算进行比较,来测试LCTTO-FF结果的数值稳定性。两种方法获得的结果非常吻合,证明了LCTTO-FF方法具有解决轻act系元素低对称性#alpha#相的特性的能力。

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