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Investigations of 'soft-landed' Cd surface atoms via nuclear methods: hyperfine-field sign determination

机译:通过核方法研究“软着陆” Cd表面原子:超精细场标志确定

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Using refined preparation techniques, cadmium guest atoms have been positioned at different sites on the surfaces of nickel crystals. The magnetic hyperfine and the electric field gradients at the Cd nuclei were measured by time-dependent perturbed angular correlation (TDPAC) spectroscopy of the emitted gamma radiations. By measuring the combined interactions, electric field gradients and magnetic hyperfine fields can be unambiguously attributed to each surface site. The signs of the magnetic hyperfine fields are determined by applying an external magnetic field and choosing the appropriate gamma-ray detector configuration. The measured fields correlate with the number of neighbouring host atoms. Band structure calculations confirm this finding and predict magnetic fields for various sp elements from the band structure of the s-like conduction electrons. The quadrupolar interactions are manifestations of the balance in the occupation of the guest p-sublevels. These results provide new information on the structure and formation of electronic configurations of sp elements in different local environments and will contribute to understanding electronic effects on surfaces.
机译:使用改进的制备技术,已将镉客体原子定位在镍晶体表面的不同位置。 Cd原子核的超精细磁性和电场梯度是通过对发射的伽马射线的时间依赖性扰动角相关(TDPAC)光谱法测量的。通过测量组合的相互作用,可以明确地将电场梯度和超精细磁场归因于每个表面部位。通过施加外部磁场并选择适当的伽马射线探测器配置,可以确定超精细磁场的符号。测得的场与相邻的主原子数相关。能带结构的计算证实了这一发现,并根据s类传导电子的能带结构预测了各种sp元素的磁场。四极相互作用是客体p-子水平占据平衡的体现。这些结果提供了有关不同局部环境中sp元素电子结构的结构和形成的新信息,并将有助于理解表面上的电子效应。

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