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Dynamic polarizabilities of rare-earth-metal atoms and dispersion coefficients for their interaction with helium atoms

机译:稀土金属原子的动态极化率及其与氦原子相互作用的色散系数

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摘要

The dynamic scalar and tensor polarizabilities of the rare-earth-metal atoms are calculated with time-dependent density functional theory. The frequency-dependent polarizabilities at imaginary frequencies are used to determine the isotropic and orientation-dependent van der Waals coefficients for the interactions of the rare-earth-metal atoms with helium atoms. The static polarizabilities are compared with other theoretical values and with experimental results. The agreement is satisfactory in most cases but there are some exceptions where the discrepancy between theory and experiment is significant. The derived isotropic van der Waals coefficients range between 37 and 50 E(H)a(0)(6) and the orientation-dependent coefficients between 2 and -1 E(H)a(0)(6). Thus the ratio of elastic to inelastic scattering cross sections is expected to be substantial and any one of the rare-earth-metal atoms is an excellent candidate for trapping and cooling in a He gas.
机译:利用时变密度泛函理论计算了稀土金属原子的动态标量和张量极化率。虚数频率上与频率有关的极化率用于确定稀土金属原子与氦原子相互作用的各向同性和与方向有关的范德华系数。将静态极化率与其他理论值和实验结果进行比较。在大多数情况下,该协议是令人满意的,但在某些例外情况下,理论与实验之间的差异非常明显。导出的各向同性范德华系数范围在37至50 E(H)a(0)(6)之间,方向相关系数在2至-1 E(H)a(0)(6)之间。因此,预期弹性散射截面与非弹性散射截面的比率将是很大的,并且稀土金属原子中的任何一个都是用于捕集和冷却He气的极佳候选者。

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