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Evidence from Fermi surface analysis for the low-temperature structure of lithium

机译:费米表面分析的锂低温结构证据

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摘要

The low-temperature crystal structure of elemental lithium, the prototypical simple metal, is a several-decades-old problem. At 1 atm pressure and 298 K, Li forms a body-centered cubic lattice, which is common to all alkali metals. However, a low-temperature phase transition was experimentally detected to a structure initially identified as having the 9R stacking. This structure, proposed by Overhauser in 1984, has been questioned repeatedly but has not been confirmed. Here we present a theoretical analysis of the Fermi surface of lithium in several relevant structures. We demonstrate that experimental measurements of the Fermi surface based on the de Haas–van Alphen effect can be used as a diagnostic method to investigate the low-temperature phase diagram of lithium. This approach may overcome the limitations of X-ray and neutron diffraction techniques and makes possible, in principle, the determination of the lithium low-temperature structure (and that of other metals) at both ambient and high pressure. The theoretical results are compared with existing low-temperature ambient pressure experimental data, which are shown to be inconsistent with a 9R phase for the low-temperature structure of lithium.
机译:典型的简单金属单质锂的低温晶体结构已有数十年历史了。在1个大气压和298 K的压力下,Li形成一个以体心为中心的立方晶格,该晶格对于所有碱金属都是通用的。但是,通过实验检测到最初鉴定为具有9R堆积的结构的低温相变。这种结构由奥弗豪瑟(Overhauser)于1984年提出,曾多次受到质疑,但尚未得到证实。在这里,我们介绍了几种相关结构中锂费米表面的理论分析。我们证明基于de Haas-van Alphen效应的费米表面的实验测量可以用作诊断锂低温相图的诊断方法。这种方法可以克服X射线和中子衍射技术的局限性,并且原则上可以在环境压力和高压条件下确定锂的低温结构(以及其他金属的低温结构)。将理论结果与现有的低温环境压力实验数据进行了比较,结果表明与锂的低温结构的9R相不一致。

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