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Nitrogen mapping from ADF imaging analysis in quaternary dilute nitride superlattices

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URI: http://hdl.handle.net/10498/38899

DOI: 10.1016/J.APSUSC.2018.12.228

ISSN: 1873-5584

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Author/s
Ruiz Marín, NazaretAuthority UCA; Fernández de los Reyes, DanielAuthority UCA; Braza Blanco, María VerónicaAuthority UCA; Gonzalo, Alicia; Ben Fernández, TeresaAuthority UCA; Flores Gallegos, SaraAuthority UCA; Ulloa, J. M.; González Robledo, DavidAuthority UCA
Date
2019
Department
Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica
Source
Applied Surface Science - 2019, Vol. pp. 473-478
Abstract
A method for the determination of N distribution in dilute nitride GaAsSbN superlattices (SLs) by using different STEM imaging settings is proposed. The method combines the simultaneous acquisition under Low Angle (LA-) and High Angle (HA-) Annular Dark Field (ADF) conditions by exploiting two different dedicated angle intervals. On one hand, HAADF technique gives information that principally depends on the atomic number (Sb sensitive) and on the other hand, N atoms produce high static atomic displacements affecting the image intensity especially under LAADF conditions. However, the simultaneous presence of Sb and N supposes an important handicap to differentiate both elements. N distribution maps could be obtained from suitable normalization and the separation of the intensity ratios in regions with/without Sb. Semiquantitative maps are also available by combination of the results from high-resolution X-ray diffraction and energy dispersive X-Ray spectroscopy techniques. Type-I (GaAsSbN/GaAs) and type-II (GaAsSb/GaAsN) SL structures are evaluated using the proposed methodology. Differences in the N distribution between both samples such as inhomogeneities and cluster formation are discussed. Specifically, we have found a greater number of N-rich regions in type-I structure as compared to their type-II counterparts, which could have an influence on the optical response of each design.
Subjects
Superlattice structures; Compositional distribution; STEM; Dilute nitride
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Attribution-NonCommercial-NoDerivatives 4.0 Internacional
This work is under a Creative Commons License Attribution-NonCommercial-NoDerivatives 4.0 Internacional

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