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首页> 外文期刊>Physical Review, B. Condensed Matter >Two-dimensional folding technique for enhancing Fermi surface signatures in the momentum density: Application to Compton scattering data from an Al-3 at. % Li disordered alloy - art. no. 045121
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Two-dimensional folding technique for enhancing Fermi surface signatures in the momentum density: Application to Compton scattering data from an Al-3 at. % Li disordered alloy - art. no. 045121

机译:在动量密度中增强费米表面特征的二维折叠技术:应用于Al-3 at的康普顿散射数据。 %Li无序合金-艺术。没有。 045121

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摘要

We present a technique for enhancing Fermi surface (FS) signatures in the two-dimensional (2D) distribution obtained after the 3D momentum density in a crystal is projected along a specific direction in momentum space. These results are useful for investigating fermiology via high-resolution Compton scattering and positron annihilation spectroscopies. We focus on the particular case of the (110) projection in a fcc crystal where the standard approach based on the use of the Lock-Crisp-West (LCW) folding theorem fails to give a clear FS image due to the strong overlap with FS images obtained through projection from higher Brillouin zones. We show how these superposed FS images can be disentangled by using a selected set of reciprocal lattice vectors in the folding process. The applicability of our partial folding scheme is illustrated by considering Compton spectra from an Al-3 at. % Li disordered alloy single crystal. For this purpose, high-resolution Compton profiles along nine directions in the (110) plane were measured. Corresponding highly accurate theoretical profiles in Al-3 at. % Li were computed within the local density approximation (LDA)-based Korringa-Kohn-Rostoker coherent potential approximation (KKR-CPA) first-principles framework. A good level of overall accord between theory and experiment is obtained, some expected discrepancies reflecting electron correlation effects notwithstanding, and the partial folding scheme is shown to yield a clear FS image in the (110) plane in Al-3 at. % Li. [References: 40]
机译:我们提出了一种在晶体中的3D动量密度沿动量空间中的特定方向投影后获得的二维(2D)分布中增强费米表面(FS)签名的技术。这些结果对于通过高分辨率康普顿散射和正电子an没光谱学研究射线学很有用。我们关注fcc晶体中(110)投影的特殊情况,其中基于使用Lock-Crisp-West(LCW)折叠定理的标准方法由于与FS的强烈重叠而无法提供清晰的FS图像通过投影从较高的布里渊区获得的图像。我们展示了如何在折叠过程中通过使用一组选定的倒易晶格矢量来解开这些叠加的FS图像。通过考虑来自Al-3 at的康普顿光谱来说明我们的部分折叠方案的适用性。 %Li无序合金单晶。为此,测量了沿(110)平面中九个方向的高分辨率Compton轮廓。 Al-3 at处相应的高精度理论轮廓。在基于局部密度近似(LDA)的Korringa-Kohn-Rostoker相干势近似(KKR-CPA)第一性原理框架内计算%Li。在理论和实验之间获得了良好的总体一致性,尽管存在一些反映电子相关效应的预期差异,并且显示了部分折叠方案在Al-3 at的(110)平面上产生了清晰的FS图像。李。 [参考:40]

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