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  • American Association of Petroleum Geologists (AAPG)  (1)
  • American Institute of Physics (AIP)  (1)
  • 1
    Publication Date: 2015-05-05
    Description: Silicon nanocrystals formed in the annealed SiN x /Si 3 N 4 superlattices are attractive for research due to the smaller band offsets of Si 3 N 4 matrix to Si in comparison with commonly used SiO x /SiO 2 superlattices. However, the annealed SiN x /Si 3 N 4 structures contain an increased number of nanocrystal interface defects, which completely suppress nanocrystal emission spectrum. In this work, we study a novel SiO x N y /Si 3 N 4 hetero multilayer combination, which compromises the major issues of SiO x /SiO 2 and SiN x /Si 3 N 4 superlattices. The annealed SiO x N y /Si 3 N 4 superlattices are investigated by TEM, demonstrating a precise sublayer thicknesses control. The PL spectra of the annealed SiO x N y /Si 3 N 4 superlattices are centered at 845–950 nm with an expected PL peak shift for silicon nanocrystals of different sizes albeit the PL intensity is drastically reduced as compared to SiO 2 separation barriers. The comparison of PL spectra of annealed SiO x N y /Si 3 N 4 superlattice with those of SiO x N y /SiO 2 superlattice enables the analysis of the interface quality of silicon nanocrystals. Using the literature data, the number of the interface defects and their distribution on the nanocrystal facets are estimated. Finally, it is shown that the increase of the Si 3 N 4 barrier thickness leads to the increased energy transfer from the Si nanocrystals into the Si 3 N 4 matrix, which explains an additional drop of the nanocrystal PL intensity.
    Print ISSN: 0021-8979
    Electronic ISSN: 1089-7550
    Topics: Physics
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  • 2
    Publication Date: 2019-07-16
    Description: Petroleum systems located at passive continental margins received increasing attention in the last decade mainly because of deep- and ultra‐deep-water hydrocarbon exploration and production. The high risks associated with these settings originate mainly from the poor understanding of inherent geodynamic processes. The new priority program SAMPLE (South Atlantic Margin Processes and Links with onshore Evolution), established by the German Science Foundation in 2009 for a total duration of 6 years, addresses a number of open questions related to continental breakup and post‐breakup evolution of passive continental margins. 27 sub‐projects take advantage of the exceptional conditions of the South Atlantic as a prime “Geo‐archive.” The regional focus is set on the conjugate margins located east of Brazil and Argentina on one side and west of Angola, Namibia and South Africa on the other (Figure 1) as well as on the Walvis Ridge and the present‐day hotspot of Tristan da Cunha. The economic relevance of the program is demonstrated by support from several petroleum companies, but the main goal is research on fundamental processes behind the evolution of passive continental margins.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Book , peerRev
    Format: application/pdf
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