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利用同步加速器 X 射线对单个原子进行特性分析。

Characterization of just one atom using synchrotron X-rays.

机构信息

Nanoscience and Technology Division, Argonne National Laboratory, Lemont, IL, USA.

Nanoscale and Quantum Phenomena Institute, Physics & Astronomy Department, Ohio University, Athens, OH, USA.

出版信息

Nature. 2023 Jun;618(7963):69-73. doi: 10.1038/s41586-023-06011-w. Epub 2023 May 31.

Abstract

Since the discovery of X-rays by Roentgen in 1895, its use has been ubiquitous, from medical and environmental applications to materials sciences. X-ray characterization requires a large number of atoms and reducing the material quantity is a long-standing goal. Here we show that X-rays can be used to characterize the elemental and chemical state of just one atom. Using a specialized tip as a detector, X-ray-excited currents generated from an iron and a terbium atom coordinated to organic ligands are detected. The fingerprints of a single atom, the L and M absorption edge signals for iron and terbium, respectively, are clearly observed in the X-ray absorption spectra. The chemical states of these atoms are characterized by means of near-edge X-ray absorption signals, in which X-ray-excited resonance tunnelling (X-ERT) is dominant for the iron atom. The X-ray signal can be sensed only when the tip is located directly above the atom in extreme proximity, which confirms atomically localized detection in the tunnelling regime. Our work connects synchrotron X-rays with a quantum tunnelling process and opens future X-rays experiments for simultaneous characterizations of elemental and chemical properties of materials at the ultimate single-atom limit.

摘要

自 1895 年伦琴发现 X 射线以来,其应用已经无处不在,从医学和环境应用到材料科学。X 射线的特性需要大量的原子,而减少材料数量是一个长期的目标。在这里,我们展示了仅使用一个原子就能对其元素和化学状态进行特征分析。我们使用一个特殊的针尖作为探测器,探测到与有机配体配位的铁和铽原子产生的 X 射线激发电流。在 X 射线吸收光谱中,可以清楚地观察到单个原子的特征指纹,即铁和铽的 L 和 M 吸收边信号。通过近边 X 射线吸收信号对这些原子的化学状态进行了表征,其中 X 射线激发共振隧穿(X-ERT)在铁原子中占主导地位。只有当针尖位于原子正上方且非常接近时,才能检测到 X 射线信号,这证实了在隧穿状态下原子级别的检测。我们的工作将同步加速器 X 射线与量子隧穿过程联系起来,为在单原子极限下同时对材料的元素和化学性质进行特性分析开辟了未来的 X 射线实验。

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