论文标题

通过横截面扫描隧道显微镜在GAAS中研究的GAAS中的N-NH复合物

N-nH complexes in GaAs studied at the atomic scale by cross-sectional scanning tunneling microscopy

论文作者

Tjeertes, D., Verstijnen, T. J. F., Gonzalo, A., Ulloa, J. M., Sharma, M. S., Felici, M., Polimeni, A., Biccari, F., Gurioli, M., Pettinari, G., Şahin, C., Flatté, M. E., Koenraad, P. M.

论文摘要

氮(N)掺杂的GAA的氢化可以通过操纵N-NH-NH复合物,N-NH复合物的操纵来对带隙进行可逆调整,并创建位点受控的量子点,其中氮原子被N氢(H)原子包围。在这里,我们采用横截面扫描隧道显微镜(X-STM)在原子尺度上研究GAAS(110)表面的这些复合物。除此之外,我们还进行了密度功能理论(DFT)计算以确定N-NH复合物的原子特性。我们认为,在(110)GAAS表面表面或附近,N-NH复合物的两个H原子分离为H $ _2 $分子。我们观察到与氢化过程有关的多个特征,该过程将子集分类为N-1H复合物。这些与N-1H相关的特征显示,GAAS表面N原子的局部密度(LDOS)明显降低,并在位于三个晶体方向之一的LDO中具有额外的明显局部增强。 N-NH功能可以用STM尖端操纵。在一个情况下显示两个镜像对称状态之间的切换行为,在另一种情况下,删除了LDO的局部增强。明亮对比的消失很可能是从N-NH复合物中去除H原子的标志。

Hydrogenation of nitrogen (N) doped GaAs allows for reversible tuning of the bandgap and the creation of site controlled quantum dots through the manipulation of N-nH complexes, N-nH complexes, wherein a nitrogen atom is surrounded by n hydrogen (H) atoms. Here we employ cross-sectional scanning tunneling microscopy (X-STM) to study these complexes in the GaAs (110) surface at the atomic scale. In addition to that we performed density functional theory (DFT) calculations to determine the atomic properties of the N-nH complexes. We argue that at or near the (110) GaAs surface two H atoms from N-nH complexes dissociate as an H$_2$ molecule. We observe multiple features related to the hydrogenation process, of which a subset is classified as N-1H complexes. These N-1H related features show an apparent reduction of the local density of states (LDOS), characteristic to N atoms in the GaAs (110) surface with an additional apparent localized enhancement of the LDOS located in one of three crystal directions. N-nH features can be manipulated with the STM tip. Showing in one case a switching behavior between two mirror-symmetric states and in another case a removal of the localized enhancement of the LDOS. The disappearance of the bright contrast is most likely a signature of the removal of an H atom from the N-nH complex.

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